id	sid	tid	token	lemma	pos
cet-386	1	1	microsoft	microsoft	PROPN
cet-386	1	2	word	word	NOUN
cet-386	1	3	18patella.docx	18patella.docx	NUM
cet-386	1	4	chemical	chemical	NOUN
cet-386	1	5	engineeringtransactions	engineeringtransaction	NOUN
cet-386	1	6	vol	vol	NOUN
cet-386	1	7	.	.	PROPN
cet-386	1	8	60	60	NUM
cet-386	1	9	,	,	PUNCT
cet-386	1	10	2017	2017	NUM
cet-386	1	11	a	a	DET
cet-386	1	12	publication	publication	NOUN
cet-386	1	13	of	of	ADP
cet-386	1	14	the	the	DET
cet-386	1	15	italian	italian	ADJ
cet-386	1	16	association	association	NOUN
cet-386	1	17	of	of	ADP
cet-386	1	18	chemical	chemical	PROPN
cet-386	1	19	engineering	engineering	NOUN
cet-386	1	20	online	online	ADV
cet-386	1	21	at	at	ADP
cet-386	1	22	www.aidic.it/cet	www.aidic.it/cet	PROPN
cet-386	1	23	guest	guest	NOUN
cet-386	1	24	editors	editor	NOUN
cet-386	1	25	:	:	PUNCT
cet-386	1	26	luca	luca	PROPN
cet-386	1	27	di	di	PROPN
cet-386	1	28	palma	palma	PROPN
cet-386	1	29	,	,	PUNCT
cet-386	1	30	elisabetta	elisabetta	PROPN
cet-386	1	31	petrucci	petrucci	PROPN
cet-386	1	32	,	,	PUNCT
cet-386	1	33	marco	marco	PROPN
cet-386	1	34	stoller	stoller	PROPN
cet-386	1	35	copyright	copyright	PROPN
cet-386	1	36	©	©	PROPN
cet-386	1	37	2017	2017	NUM
cet-386	1	38	,	,	PUNCT
cet-386	1	39	aidic	aidic	ADJ
cet-386	1	40	servizi	servizi	PROPN
cet-386	1	41	s.r.l	s.r.l	NOUN
cet-386	1	42	.	.	PUNCT
cet-386	2	1	isbn978	isbn978	PROPN
cet-386	2	2	-	-	PUNCT
cet-386	2	3	88	88	NUM
cet-386	2	4	-	-	PUNCT
cet-386	2	5	9560850	9560850	NUM
cet-386	2	6	-	-	SYM
cet-386	2	7	1	1	NUM
cet-386	2	8	;	;	PUNCT
cet-386	2	9	issn	issn	PROPN
cet-386	2	10	2283	2283	NUM
cet-386	2	11	-	-	SYM
cet-386	2	12	9216	9216	NUM
cet-386	2	13	synthesis	synthesis	NOUN
cet-386	2	14	structure	structure	NOUN
cet-386	2	15	and	and	CCONJ
cet-386	2	16	optical	optical	ADJ
cet-386	2	17	properties	property	NOUN
cet-386	2	18	of	of	ADP
cet-386	2	19	pp+pbs	pp+pb	NOUN
cet-386	2	20	/	/	SYM
cet-386	2	21	cds	cd	NOUN
cet-386	2	22	hybrid	hybrid	ADJ
cet-386	2	23	nanocomposites	nanocomposite	NOUN
cet-386	2	24	aygula.novruzovaa	aygula.novruzovaa	NOUN
cet-386	2	25	,	,	PUNCT
cet-386	2	26	mahammadali	mahammadali	PROPN
cet-386	2	27	a.ramazanova	a.ramazanova	PROPN
cet-386	2	28	,	,	PUNCT
cet-386	2	29	angelo	angelo	PROPN
cet-386	2	30	chianeseb	chianeseb	PROPN
cet-386	2	31	,	,	PUNCT
cet-386	2	32	flora	flora	NOUN
cet-386	2	33	v.hajiyeva*a	v.hajiyeva*a	PROPN
cet-386	2	34	,	,	PUNCT
cet-386	2	35	abel	abel	PROPN
cet-386	2	36	m.	m.	PROPN
cet-386	2	37	maharramova	maharramova	PROPN
cet-386	2	38	,	,	PUNCT
cet-386	2	39	ulviyya	ulviyya	ADV
cet-386	2	40	a.hasanovaa	a.hasanovaa	ADP
cet-386	2	41	a	a	DET
cet-386	2	42	baku	baku	PROPN
cet-386	2	43	state	state	PROPN
cet-386	2	44	university	university	PROPN
cet-386	2	45	,	,	PUNCT
cet-386	2	46	az	az	PROPN
cet-386	2	47	1148	1148	NUM
cet-386	2	48	,	,	PUNCT
cet-386	2	49	academic	academic	PROPN
cet-386	2	50	zahid	zahid	PROPN
cet-386	2	51	khalilov	khalilov	PROPN
cet-386	2	52	street	street	PROPN
cet-386	2	53	,	,	PUNCT
cet-386	2	54	23	23	NUM
cet-386	2	55	b	b	PROPN
cet-386	2	56	sapienza	sapienza	PROPN
cet-386	2	57	university	university	PROPN
cet-386	2	58	of	of	ADP
cet-386	2	59	rome	rome	PROPN
cet-386	2	60	,	,	PUNCT
cet-386	2	61	dept	dept	NOUN
cet-386	2	62	.	.	PUNCT
cet-386	3	1	chemical	chemical	PROPN
cet-386	3	2	engineering	engineering	PROPN
cet-386	3	3	,	,	PUNCT
cet-386	3	4	via	via	ADP
cet-386	3	5	eudossiana	eudossiana	PROPN
cet-386	3	6	18	18	NUM
cet-386	3	7	,	,	PUNCT
cet-386	3	8	i00184	i00184	VERB
cet-386	3	9	rome	rome	PROPN
cet-386	3	10	,	,	PUNCT
cet-386	3	11	italy	italy	PROPN
cet-386	3	12	flora_1985@mail.ru	flora_1985@mail.ru	VERB
cet-386	3	13	in	in	ADP
cet-386	3	14	this	this	DET
cet-386	3	15	paper	paper	NOUN
cet-386	3	16	,	,	PUNCT
cet-386	3	17	we	we	PRON
cet-386	3	18	report	report	VERB
cet-386	3	19	the	the	DET
cet-386	3	20	synthesis	synthesis	NOUN
cet-386	3	21	of	of	ADP
cet-386	3	22	hybrid	hybrid	ADJ
cet-386	3	23	polymer	polymer	NOUN
cet-386	3	24	nanocomposites	nanocomposite	NOUN
cet-386	3	25	pp+pbs	pp+pb	NOUN
cet-386	3	26	/	/	SYM
cet-386	3	27	cds	cd	NOUN
cet-386	3	28	,	,	PUNCT
cet-386	3	29	characterization	characterization	NOUN
cet-386	3	30	of	of	ADP
cet-386	3	31	their	their	PRON
cet-386	3	32	structure	structure	NOUN
cet-386	3	33	and	and	CCONJ
cet-386	3	34	study	study	NOUN
cet-386	3	35	of	of	ADP
cet-386	3	36	their	their	PRON
cet-386	3	37	optical	optical	ADJ
cet-386	3	38	properties	property	NOUN
cet-386	3	39	.	.	PUNCT
cet-386	4	1	the	the	DET
cet-386	4	2	structure	structure	NOUN
cet-386	4	3	and	and	CCONJ
cet-386	4	4	distribution	distribution	NOUN
cet-386	4	5	of	of	ADP
cet-386	4	6	nanoparticles	nanoparticle	NOUN
cet-386	4	7	in	in	ADP
cet-386	4	8	the	the	DET
cet-386	4	9	polymer	polymer	NOUN
cet-386	4	10	were	be	AUX
cet-386	4	11	studied	study	VERB
cet-386	4	12	by	by	ADP
cet-386	4	13	means	mean	VERB
cet-386	4	14	ofthe	ofthe	NOUN
cet-386	4	15	scanning	scan	VERB
cet-386	4	16	electron	electron	NOUN
cet-386	4	17	microscopy	microscopy	NOUN
cet-386	4	18	(	(	PUNCT
cet-386	4	19	sem	sem	NOUN
cet-386	4	20	)	)	PUNCT
cet-386	4	21	.	.	PUNCT
cet-386	5	1	it	it	PRON
cet-386	5	2	was	be	AUX
cet-386	5	3	found	find	VERB
cet-386	5	4	that	that	SCONJ
cet-386	5	5	the	the	DET
cet-386	5	6	average	average	ADJ
cet-386	5	7	nanoparticle	nanoparticle	NOUN
cet-386	5	8	size	size	NOUN
cet-386	5	9	for	for	ADP
cet-386	5	10	a	a	DET
cet-386	5	11	hybrid	hybrid	ADJ
cet-386	5	12	nanocomposite	nanocomposite	NOUN
cet-386	5	13	pp+pbs	pp+pb	NOUN
cet-386	5	14	/	/	SYM
cet-386	5	15	cds	cd	NOUN
cet-386	5	16	is	be	AUX
cet-386	5	17	9	9	NUM
cet-386	5	18	-	-	SYM
cet-386	5	19	12	12	NUM
cet-386	5	20	nm	nm	NOUN
cet-386	5	21	.	.	PUNCT
cet-386	6	1	optical	optical	ADJ
cet-386	6	2	and	and	CCONJ
cet-386	6	3	photoluminescent	photoluminescent	NOUN
cet-386	6	4	properties	property	NOUN
cet-386	6	5	of	of	ADP
cet-386	6	6	nanocomposites	nanocomposite	NOUN
cet-386	6	7	were	be	AUX
cet-386	6	8	also	also	ADV
cet-386	6	9	studied	study	VERB
cet-386	6	10	.	.	PUNCT
cet-386	7	1	from	from	ADP
cet-386	7	2	uv	uv	PROPN
cet-386	7	3	spectra	spectra	NOUN
cet-386	7	4	of	of	ADP
cet-386	7	5	nanocomposites	nanocomposite	NOUN
cet-386	7	6	by	by	ADP
cet-386	7	7	extrapolation	extrapolation	NOUN
cet-386	7	8	method	method	NOUN
cet-386	7	9	the	the	DET
cet-386	7	10	width	width	NOUN
cet-386	7	11	of	of	ADP
cet-386	7	12	the	the	DET
cet-386	7	13	forbidden	forbid	VERB
cet-386	7	14	band	band	NOUN
cet-386	7	15	for	for	ADP
cet-386	7	16	polymer	polymer	NOUN
cet-386	7	17	nanocompositeswas	nanocompositeswas	ADV
cet-386	7	18	determined	determine	VERB
cet-386	7	19	.	.	PUNCT
cet-386	8	1	the	the	DET
cet-386	8	2	band	band	NOUN
cet-386	8	3	gap	gap	NOUN
cet-386	8	4	was	be	AUX
cet-386	8	5	equal	equal	ADJ
cet-386	8	6	to	to	ADP
cet-386	8	7	1.65	1.65	NUM
cet-386	8	8	ev	ev	NOUN
cet-386	8	9	for	for	ADP
cet-386	8	10	pp	pp	PROPN
cet-386	8	11	/	/	SYM
cet-386	8	12	pbs	pbs	NOUN
cet-386	8	13	nanocomposites	nanocomposite	NOUN
cet-386	8	14	,	,	PUNCT
cet-386	8	15	to	to	ADP
cet-386	8	16	2,6	2,6	NUM
cet-386	8	17	ev	ev	INTJ
cet-386	8	18	for	for	ADP
cet-386	8	19	pp	pp	PROPN
cet-386	8	20	/	/	SYM
cet-386	8	21	cds	cd	NOUN
cet-386	8	22	and	and	CCONJ
cet-386	8	23	to	to	ADP
cet-386	8	24	3.0	3.0	NUM
cet-386	8	25	ev	ev	NOUN
cet-386	8	26	for	for	ADP
cet-386	8	27	pp+pbs	pp+pb	NOUN
cet-386	8	28	/	/	SYM
cet-386	8	29	cds	cd	NOUN
cet-386	8	30	nanocomposites	nanocomposite	NOUN
cet-386	8	31	.	.	PUNCT
cet-386	9	1	photoluminescence	photoluminescence	NOUN
cet-386	9	2	analysis	analysis	NOUN
cet-386	9	3	of	of	ADP
cet-386	9	4	nanocomposites	nanocomposite	NOUN
cet-386	9	5	pp+pbs	pp+pb	NOUN
cet-386	9	6	/	/	SYM
cet-386	9	7	cds	cd	NOUN
cet-386	9	8	shows	show	VERB
cet-386	9	9	two	two	NUM
cet-386	9	10	luminescent	luminescent	NOUN
cet-386	9	11	peaks	peak	NOUN
cet-386	9	12	at	at	ADP
cet-386	9	13	the	the	DET
cet-386	9	14	wavelengths	wavelength	NOUN
cet-386	9	15	of	of	ADP
cet-386	9	16	680	680	NUM
cet-386	9	17	nm	nm	NOUN
cet-386	9	18	and	and	CCONJ
cet-386	9	19	715	715	NUM
cet-386	9	20	nm	nm	NOUN
cet-386	9	21	of	of	ADP
cet-386	9	22	the	the	DET
cet-386	9	23	luminescence	luminescence	NOUN
cet-386	9	24	spectrum	spectrum	NOUN
cet-386	9	25	.	.	PUNCT
cet-386	10	1	therefore	therefore	ADV
cet-386	10	2	,	,	PUNCT
cet-386	10	3	for	for	ADP
cet-386	10	4	such	such	ADJ
cet-386	10	5	systems	system	NOUN
cet-386	10	6	,	,	PUNCT
cet-386	10	7	it	it	PRON
cet-386	10	8	was	be	AUX
cet-386	10	9	proved	prove	VERB
cet-386	10	10	that	that	SCONJ
cet-386	10	11	the	the	DET
cet-386	10	12	spectral	spectral	ADJ
cet-386	10	13	region	region	NOUN
cet-386	10	14	is	be	AUX
cet-386	10	15	expanded	expand	VERB
cet-386	10	16	and	and	CCONJ
cet-386	10	17	it	it	PRON
cet-386	10	18	makes	make	VERB
cet-386	10	19	possible	possible	ADJ
cet-386	10	20	to	to	PART
cet-386	10	21	apply	apply	VERB
cet-386	10	22	such	such	ADJ
cet-386	10	23	nanocomposites	nanocomposite	NOUN
cet-386	10	24	in	in	ADP
cet-386	10	25	various	various	ADJ
cet-386	10	26	fields	field	NOUN
cet-386	10	27	of	of	ADP
cet-386	10	28	science	science	NOUN
cet-386	10	29	and	and	CCONJ
cet-386	10	30	technology	technology	NOUN
cet-386	10	31	.	.	PUNCT
cet-386	11	1	1	1	X
cet-386	11	2	.	.	X
cet-386	11	3	introduction	introduction	NOUN
cet-386	11	4	the	the	DET
cet-386	11	5	size	size	NOUN
cet-386	11	6	dependent	dependent	ADJ
cet-386	11	7	properties	property	NOUN
cet-386	11	8	of	of	ADP
cet-386	11	9	semiconductor	semiconductor	NOUN
cet-386	11	10	/	/	SYM
cet-386	11	11	polymer	polymer	NOUN
cet-386	11	12	nanocomposites	nanocomposite	NOUN
cet-386	11	13	make	make	VERB
cet-386	11	14	these	these	DET
cet-386	11	15	materials	material	NOUN
cet-386	11	16	very	very	ADV
cet-386	11	17	attractive	attractive	ADJ
cet-386	11	18	in	in	ADP
cet-386	11	19	terms	term	NOUN
cet-386	11	20	of	of	ADP
cet-386	11	21	their	their	PRON
cet-386	11	22	possible	possible	ADJ
cet-386	11	23	application	application	NOUN
cet-386	11	24	in	in	ADP
cet-386	11	25	various	various	ADJ
cet-386	11	26	fields	field	NOUN
cet-386	11	27	of	of	ADP
cet-386	11	28	technic	technic	NOUN
cet-386	11	29	such	such	ADJ
cet-386	11	30	as	as	ADP
cet-386	11	31	optical	optical	ADJ
cet-386	11	32	switching	switching	NOUN
cet-386	11	33	,	,	PUNCT
cet-386	11	34	single	single	ADJ
cet-386	11	35	electron	electron	NOUN
cet-386	11	36	transistors	transistor	NOUN
cet-386	11	37	,	,	PUNCT
cet-386	11	38	solar	solar	ADJ
cet-386	11	39	cells	cell	NOUN
cet-386	11	40	,	,	PUNCT
cet-386	11	41	nonlinear	nonlinear	ADJ
cet-386	11	42	optics	optic	NOUN
cet-386	11	43	,	,	PUNCT
cet-386	11	44	optoelectronic	optoelectronic	ADJ
cet-386	11	45	device	device	NOUN
cet-386	11	46	and	and	CCONJ
cet-386	11	47	heterogeneous	heterogeneous	ADJ
cet-386	11	48	photo	photo	NOUN
cet-386	11	49	catalysis	catalysis	NOUN
cet-386	11	50	.	.	PUNCT
cet-386	12	1	there	there	PRON
cet-386	12	2	are	be	VERB
cet-386	12	3	a	a	DET
cet-386	12	4	lot	lot	NOUN
cet-386	12	5	of	of	ADP
cet-386	12	6	methods	method	NOUN
cet-386	12	7	that	that	PRON
cet-386	12	8	have	have	AUX
cet-386	12	9	been	be	AUX
cet-386	12	10	developed	develop	VERB
cet-386	12	11	to	to	PART
cet-386	12	12	produce	produce	VERB
cet-386	12	13	nanoparticles	nanoparticle	NOUN
cet-386	12	14	/	/	SYM
cet-386	12	15	polymer	polymer	NOUN
cet-386	12	16	composites	composite	NOUN
cet-386	12	17	.	.	PUNCT
cet-386	13	1	among	among	ADP
cet-386	13	2	them	they	PRON
cet-386	13	3	we	we	PRON
cet-386	13	4	can	can	AUX
cet-386	13	5	mention	mention	VERB
cet-386	13	6	the	the	DET
cet-386	13	7	mechanical	mechanical	ADJ
cet-386	13	8	blend	blend	NOUN
cet-386	13	9	of	of	ADP
cet-386	13	10	separately	separately	ADV
cet-386	13	11	prepared	prepare	VERB
cet-386	13	12	polymers	polymer	NOUN
cet-386	13	13	and	and	CCONJ
cet-386	13	14	inorganic	inorganic	ADJ
cet-386	13	15	nanoparticles	nanoparticle	NOUN
cet-386	13	16	,	,	PUNCT
cet-386	13	17	leading	lead	VERB
cet-386	13	18	to	to	ADP
cet-386	13	19	the	the	DET
cet-386	13	20	desired	desire	VERB
cet-386	13	21	polymer	polymer	NOUN
cet-386	13	22	nanocomposites	nanocomposite	NOUN
cet-386	13	23	.	.	PUNCT
cet-386	14	1	another	another	DET
cet-386	14	2	approach	approach	NOUN
cet-386	14	3	is	be	AUX
cet-386	14	4	based	base	VERB
cet-386	14	5	on	on	ADP
cet-386	14	6	the	the	DET
cet-386	14	7	reduction	reduction	NOUN
cet-386	14	8	or	or	CCONJ
cet-386	14	9	coordination	coordination	NOUN
cet-386	14	10	of	of	ADP
cet-386	14	11	the	the	DET
cet-386	14	12	generating	generate	VERB
cet-386	14	13	nanoparticles	nanoparticle	NOUN
cet-386	14	14	precursors	precursor	NOUN
cet-386	14	15	,	,	PUNCT
cet-386	14	16	in	in	ADP
cet-386	14	17	the	the	DET
cet-386	14	18	presence	presence	NOUN
cet-386	14	19	of	of	ADP
cet-386	14	20	polymer	polymer	NOUN
cet-386	14	21	matrix	matrix	NOUN
cet-386	14	22	in	in	ADP
cet-386	14	23	-	-	PUNCT
cet-386	14	24	situ	situ	NOUN
cet-386	14	25	,	,	PUNCT
cet-386	14	26	and	and	CCONJ
cet-386	14	27	ex	ex	NOUN
cet-386	14	28	-	-	NOUN
cet-386	14	29	situ	situ	ADJ
cet-386	14	30	,	,	PUNCT
cet-386	14	31	when	when	SCONJ
cet-386	14	32	the	the	DET
cet-386	14	33	nanoparticles	nanoparticle	NOUN
cet-386	14	34	are	be	AUX
cet-386	14	35	previously	previously	ADV
cet-386	14	36	synthesized	synthesize	VERB
cet-386	14	37	and	and	CCONJ
cet-386	14	38	then	then	ADV
cet-386	14	39	are	be	AUX
cet-386	14	40	introduced	introduce	VERB
cet-386	14	41	within	within	ADP
cet-386	14	42	the	the	DET
cet-386	14	43	polymer	polymer	NOUN
cet-386	14	44	matrix	matrix	NOUN
cet-386	14	45	(	(	PUNCT
cet-386	14	46	z.i.ali	z.i.ali	PROPN
cet-386	14	47	et.al	et.al	PROPN
cet-386	14	48	,	,	PUNCT
cet-386	14	49	2015	2015	NUM
cet-386	14	50	)	)	PUNCT
cet-386	14	51	.the	.the	PRON
cet-386	14	52	high	high	ADJ
cet-386	14	53	surface	surface	NOUN
cet-386	14	54	-	-	PUNCT
cet-386	14	55	to	to	ADP
cet-386	14	56	-	-	PUNCT
cet-386	14	57	volume	volume	NOUN
cet-386	14	58	ratio	ratio	NOUN
cet-386	14	59	of	of	ADP
cet-386	14	60	semiconductors	semiconductor	NOUN
cet-386	14	61	nanoparticles	nanoparticle	NOUN
cet-386	14	62	in	in	ADP
cet-386	14	63	comparison	comparison	NOUN
cet-386	14	64	with	with	ADP
cet-386	14	65	their	their	PRON
cet-386	14	66	bulk	bulk	ADJ
cet-386	14	67	analogues	analogue	NOUN
cet-386	14	68	differentiates	differentiate	VERB
cet-386	14	69	their	their	PRON
cet-386	14	70	properties	property	NOUN
cet-386	14	71	and	and	CCONJ
cet-386	14	72	emphasizes	emphasize	VERB
cet-386	14	73	the	the	DET
cet-386	14	74	use	use	NOUN
cet-386	14	75	of	of	ADP
cet-386	14	76	their	their	PRON
cet-386	14	77	optical	optical	ADJ
cet-386	14	78	and	and	CCONJ
cet-386	14	79	optoelectronic	optoelectronic	ADJ
cet-386	14	80	properties	property	NOUN
cet-386	14	81	that	that	PRON
cet-386	14	82	mainly	mainly	ADV
cet-386	14	83	depend	depend	VERB
cet-386	14	84	on	on	ADP
cet-386	14	85	their	their	PRON
cet-386	14	86	size	size	NOUN
cet-386	14	87	and	and	CCONJ
cet-386	14	88	shape	shape	NOUN
cet-386	14	89	.	.	PUNCT
cet-386	15	1	the	the	DET
cet-386	15	2	cds	cd	NOUN
cet-386	15	3	is	be	AUX
cet-386	15	4	a	a	DET
cet-386	15	5	semiconductor	semiconductor	NOUN
cet-386	15	6	that	that	PRON
cet-386	15	7	is	be	AUX
cet-386	15	8	able	able	ADJ
cet-386	15	9	to	to	PART
cet-386	15	10	absorb	absorb	VERB
cet-386	15	11	the	the	DET
cet-386	15	12	light	light	NOUN
cet-386	15	13	from	from	ADP
cet-386	15	14	the	the	DET
cet-386	15	15	visible	visible	ADJ
cet-386	15	16	region	region	NOUN
cet-386	15	17	of	of	ADP
cet-386	15	18	spectra	spectra	NOUN
cet-386	15	19	.	.	PUNCT
cet-386	16	1	due	due	ADP
cet-386	16	2	to	to	ADP
cet-386	16	3	its	its	PRON
cet-386	16	4	wide	wide	ADJ
cet-386	16	5	band	band	NOUN
cet-386	16	6	gap	gap	NOUN
cet-386	16	7	,	,	PUNCT
cet-386	16	8	the	the	DET
cet-386	16	9	cds	cd	NOUN
cet-386	16	10	are	be	AUX
cet-386	16	11	applicable	applicable	ADJ
cet-386	16	12	for	for	ADP
cet-386	16	13	hetero	hetero	NOUN
cet-386	16	14	-	-	PUNCT
cet-386	16	15	junction	junction	NOUN
cet-386	16	16	solar	solar	ADJ
cet-386	16	17	cells	cell	NOUN
cet-386	16	18	(	(	PUNCT
cet-386	16	19	singh	singh	PROPN
cet-386	16	20	v	v	X
cet-386	16	21	et.al	et.al	PROPN
cet-386	16	22	,	,	PUNCT
cet-386	16	23	2010	2010	NUM
cet-386	16	24	)	)	PUNCT
cet-386	16	25	.	.	PUNCT
cet-386	17	1	the	the	DET
cet-386	17	2	energy	energy	NOUN
cet-386	17	3	of	of	ADP
cet-386	17	4	forbidden	forbid	VERB
cet-386	17	5	band	band	NOUN
cet-386	17	6	and	and	CCONJ
cet-386	17	7	high	high	ADJ
cet-386	17	8	optical	optical	ADJ
cet-386	17	9	absorption	absorption	NOUN
cet-386	17	10	makecds	makecd	VERB
cet-386	17	11	a	a	DET
cet-386	17	12	very	very	ADV
cet-386	17	13	attractive	attractive	ADJ
cet-386	17	14	material	material	NOUN
cet-386	17	15	in	in	ADP
cet-386	17	16	terms	term	NOUN
cet-386	17	17	of	of	ADP
cet-386	17	18	its	its	PRON
cet-386	17	19	application	application	NOUN
cet-386	17	20	in	in	ADP
cet-386	17	21	different	different	ADJ
cet-386	17	22	fields	field	NOUN
cet-386	17	23	of	of	ADP
cet-386	17	24	optoelectronic	optoelectronic	NOUN
cet-386	17	25	,	,	PUNCT
cet-386	17	26	photovoltaic	photovoltaic	NOUN
cet-386	17	27	,	,	PUNCT
cet-386	17	28	catalysis	catalysis	NOUN
cet-386	17	29	,	,	PUNCT
cet-386	17	30	biological	biological	ADJ
cet-386	17	31	sensing	sense	VERB
cet-386	17	32	catalysis	catalysis	NOUN
cet-386	17	33	,	,	PUNCT
cet-386	17	34	and	and	CCONJ
cet-386	17	35	thin	thin	ADJ
cet-386	17	36	film	film	NOUN
cet-386	17	37	solar	solar	ADJ
cet-386	17	38	cells	cell	NOUN
cet-386	17	39	(	(	PUNCT
cet-386	17	40	thambidurai	thambidurai	NOUN
cet-386	17	41	m	m	PROPN
cet-386	17	42	et.al	et.al	PROPN
cet-386	17	43	,	,	PUNCT
cet-386	17	44	2011	2011	NUM
cet-386	17	45	)	)	PUNCT
cet-386	17	46	.	.	PUNCT
cet-386	18	1	lead	lead	NOUN
cet-386	18	2	sulphide	sulphide	NOUN
cet-386	18	3	is	be	AUX
cet-386	18	4	widely	widely	ADV
cet-386	18	5	used	use	VERB
cet-386	18	6	for	for	ADP
cet-386	18	7	infrared	infrared	ADJ
cet-386	18	8	technique	technique	NOUN
cet-386	18	9	as	as	ADV
cet-386	18	10	well	well	ADV
cet-386	18	11	as	as	ADP
cet-386	18	12	for	for	ADP
cet-386	18	13	micro	micro	NOUN
cet-386	18	14	-	-	ADJ
cet-386	18	15	and	and	CCONJ
cet-386	18	16	optoelectronics	optoelectronic	NOUN
cet-386	18	17	.	.	PUNCT
cet-386	19	1	the	the	DET
cet-386	19	2	electrical	electrical	ADJ
cet-386	19	3	properties	property	NOUN
cet-386	19	4	of	of	ADP
cet-386	19	5	the	the	DET
cet-386	19	6	lead	lead	ADJ
cet-386	19	7	sulphide	sulphide	NOUN
cet-386	19	8	significantly	significantly	ADV
cet-386	19	9	change	change	VERB
cet-386	19	10	upon	upon	SCONJ
cet-386	19	11	transition	transition	NOUN
cet-386	19	12	from	from	ADP
cet-386	19	13	bulk	bulk	ADJ
cet-386	19	14	crystalline	crystalline	NOUN
cet-386	19	15	to	to	ADP
cet-386	19	16	nanocrystalline	nanocrystalline	ADJ
cet-386	19	17	state	state	NOUN
cet-386	19	18	as	as	ADV
cet-386	19	19	well	well	ADV
cet-386	19	20	as	as	ADP
cet-386	19	21	other	other	ADJ
cet-386	19	22	semiconductors	semiconductor	NOUN
cet-386	19	23	.	.	PUNCT
cet-386	20	1	this	this	DET
cet-386	20	2	fact	fact	NOUN
cet-386	20	3	promises	promise	VERB
cet-386	20	4	new	new	ADJ
cet-386	20	5	opportunities	opportunity	NOUN
cet-386	20	6	for	for	ADP
cet-386	20	7	the	the	DET
cet-386	20	8	use	use	NOUN
cet-386	20	9	of	of	ADP
cet-386	20	10	its	its	PRON
cet-386	20	11	optical	optical	ADJ
cet-386	20	12	features	feature	NOUN
cet-386	20	13	in	in	ADP
cet-386	20	14	the	the	DET
cet-386	20	15	visible	visible	ADJ
cet-386	20	16	and	and	CCONJ
cet-386	20	17	infrared	infrared	ADJ
cet-386	20	18	regions	region	NOUN
cet-386	20	19	.	.	PUNCT
cet-386	21	1	as	as	ADP
cet-386	21	2	a	a	DET
cet-386	21	3	narrow	narrow	ADJ
cet-386	21	4	band	band	NOUN
cet-386	21	5	semiconductor	semiconductor	NOUN
cet-386	21	6	the	the	DET
cet-386	21	7	lead	lead	ADJ
cet-386	21	8	sulphide	sulphide	NOUN
cet-386	21	9	is	be	AUX
cet-386	21	10	widely	widely	ADV
cet-386	21	11	used	use	VERB
cet-386	21	12	to	to	PART
cet-386	21	13	obtain	obtain	VERB
cet-386	21	14	temperature	temperature	NOUN
cet-386	21	15	sensitive	sensitive	ADJ
cet-386	21	16	transducers	transducer	NOUN
cet-386	21	17	,	,	PUNCT
cet-386	21	18	detectors	detector	NOUN
cet-386	21	19	operating	operate	VERB
cet-386	21	20	in	in	ADP
cet-386	21	21	the	the	DET
cet-386	21	22	infrared	infrared	ADJ
cet-386	21	23	region	region	NOUN
cet-386	21	24	(	(	PUNCT
cet-386	21	25	850	850	NUM
cet-386	21	26	-	-	SYM
cet-386	21	27	3100	3100	NUM
cet-386	21	28	nm	nm	NOUN
cet-386	21	29	)	)	PUNCT
cet-386	21	30	of	of	ADP
cet-386	21	31	spectrum	spectrum	NOUN
cet-386	21	32	,	,	PUNCT
cet-386	21	33	photo	photo	NOUN
cet-386	21	34	-	-	PUNCT
cet-386	21	35	resistors	resistor	NOUN
cet-386	21	36	and	and	CCONJ
cet-386	21	37	selective	selective	ADJ
cet-386	21	38	sensors	sensor	NOUN
cet-386	21	39	.	.	PUNCT
cet-386	22	1	properties	property	NOUN
cet-386	22	2	of	of	ADP
cet-386	22	3	lead	lead	ADJ
cet-386	22	4	sulphide	sulphide	NOUN
cet-386	22	5	significantly	significantly	ADV
cet-386	22	6	change	change	VERB
cet-386	22	7	with	with	ADP
cet-386	22	8	the	the	DET
cet-386	22	9	decrease	decrease	NOUN
cet-386	22	10	of	of	ADP
cet-386	22	11	the	the	DET
cet-386	22	12	particles	particle	NOUN
cet-386	22	13	sizes	size	VERB
cet-386	22	14	down	down	ADP
cet-386	22	15	to	to	ADP
cet-386	22	16	the	the	DET
cet-386	22	17	nanometer	nanometer	NOUN
cet-386	22	18	range	range	NOUN
cet-386	22	19	(	(	PUNCT
cet-386	22	20	a.m.maharramov	a.m.maharramov	ADJ
cet-386	22	21	et.al	et.al	PROPN
cet-386	22	22	,	,	PUNCT
cet-386	22	23	2016).therefore	2016).therefore	NUM
cet-386	22	24	the	the	DET
cet-386	22	25	production	production	NOUN
cet-386	22	26	process	process	NOUN
cet-386	22	27	ofpolymer	ofpolymer	NOUN
cet-386	22	28	nanocomposite	nanocomposite	NOUN
cet-386	22	29	materials	material	NOUN
cet-386	22	30	including	include	VERB
cet-386	22	31	very	very	ADV
cet-386	22	32	small	small	ADJ
cet-386	22	33	nanoparticles	nanoparticle	NOUN
cet-386	22	34	of	of	ADP
cet-386	22	35	lead	lead	ADJ
cet-386	22	36	sulphide	sulphide	NOUN
cet-386	22	37	and	and	CCONJ
cet-386	22	38	cadmium	cadmium	NOUN
cet-386	22	39	sulphide	sulphide	NOUN
cet-386	22	40	is	be	AUX
cet-386	22	41	of	of	ADP
cet-386	22	42	great	great	ADJ
cet-386	22	43	scientific	scientific	ADJ
cet-386	22	44	and	and	CCONJ
cet-386	22	45	practical	practical	ADJ
cet-386	22	46	interest	interest	NOUN
cet-386	22	47	.	.	PUNCT
cet-386	23	1	doi	doi	NOUN
cet-386	23	2	:	:	PUNCT
cet-386	23	3	10.3303	10.3303	NUM
cet-386	23	4	/	/	SYM
cet-386	23	5	cet1760011	cet1760011	NOUN
cet-386	23	6	please	please	INTJ
cet-386	23	7	cite	cite	VERB
cet-386	23	8	this	this	DET
cet-386	23	9	article	article	NOUN
cet-386	23	10	as	as	ADP
cet-386	23	11	:	:	PUNCT
cet-386	23	12	novruzova	novruzova	PROPN
cet-386	23	13	a.	a.	NOUN
cet-386	23	14	,	,	PUNCT
cet-386	23	15	ramazanov	ramazanov	NOUN
cet-386	23	16	m.	m.	NOUN
cet-386	23	17	,	,	PUNCT
cet-386	23	18	chianese	chianese	PROPN
cet-386	23	19	a.	a.	PROPN
cet-386	23	20	,	,	PUNCT
cet-386	23	21	hajiyeva	hajiyeva	PROPN
cet-386	23	22	f.	f.	PROPN
cet-386	23	23	,	,	PUNCT
cet-386	23	24	maharramov	maharramov	PROPN
cet-386	23	25	a.	a.	PROPN
cet-386	23	26	,	,	PUNCT
cet-386	23	27	hasanova	hasanova	PROPN
cet-386	23	28	u.	u.	PROPN
cet-386	23	29	,	,	PUNCT
cet-386	23	30	2017	2017	NUM
cet-386	23	31	,	,	PUNCT
cet-386	23	32	synthesis	synthesis	NOUN
cet-386	23	33	,	,	PUNCT
cet-386	23	34	structure	structure	NOUN
cet-386	23	35	and	and	CCONJ
cet-386	23	36	optical	optical	ADJ
cet-386	23	37	properties	property	NOUN
cet-386	23	38	of	of	ADP
cet-386	23	39	pp+pbs	pp+pb	NOUN
cet-386	23	40	/	/	SYM
cet-386	23	41	cds	cd	NOUN
cet-386	23	42	hybrid	hybrid	ADJ
cet-386	23	43	nanocomposites	nanocomposite	NOUN
cet-386	23	44	,	,	PUNCT
cet-386	23	45	chemical	chemical	ADJ
cet-386	23	46	engineering	engineering	NOUN
cet-386	23	47	transactions	transaction	NOUN
cet-386	23	48	,	,	PUNCT
cet-386	23	49	60	60	NUM
cet-386	23	50	,	,	PUNCT
cet-386	23	51	61	61	NUM
cet-386	23	52	-	-	SYM
cet-386	23	53	66	66	NUM
cet-386	23	54	doi	doi	NOUN
cet-386	23	55	:	:	PUNCT
cet-386	23	56	10.3303	10.3303	NUM
cet-386	23	57	/	/	SYM
cet-386	23	58	cet1760011	cet1760011	NOUN
cet-386	23	59	61	61	NUM
cet-386	23	60	this	this	DET
cet-386	23	61	work	work	NOUN
cet-386	23	62	deals	deal	VERB
cet-386	23	63	with	with	ADP
cet-386	23	64	the	the	DET
cet-386	23	65	stabilization	stabilization	NOUN
cet-386	23	66	ofpbs	ofpb	NOUN
cet-386	23	67	and	and	CCONJ
cet-386	23	68	cds	cd	NOUN
cet-386	23	69	nanoparticles	nanoparticle	NOUN
cet-386	23	70	in	in	ADP
cet-386	23	71	a	a	DET
cet-386	23	72	thermoplastic	thermoplastic	ADJ
cet-386	23	73	polymeric	polymeric	ADJ
cet-386	23	74	matrix	matrix	NOUN
cet-386	23	75	such	such	ADJ
cet-386	23	76	as	as	ADP
cet-386	23	77	isotactic	isotactic	ADJ
cet-386	23	78	polypropylene	polypropylene	NOUN
cet-386	23	79	.	.	PUNCT
cet-386	24	1	in	in	ADP
cet-386	24	2	particular	particular	ADJ
cet-386	24	3	,	,	PUNCT
cet-386	24	4	a	a	DET
cet-386	24	5	new	new	ADJ
cet-386	24	6	synthesis	synthesis	NOUN
cet-386	24	7	of	of	ADP
cet-386	24	8	hybrid	hybrid	ADJ
cet-386	24	9	polymer	polymer	NOUN
cet-386	24	10	nanocomposites	nanocomposite	NOUN
cet-386	24	11	,	,	PUNCT
cet-386	24	12	based	base	VERB
cet-386	24	13	onpp+pbs	onpp+pbs	PROPN
cet-386	24	14	/	/	SYM
cet-386	24	15	cds	cd	NOUN
cet-386	24	16	,	,	PUNCT
cet-386	24	17	was	be	AUX
cet-386	24	18	developed	develop	VERB
cet-386	24	19	,	,	PUNCT
cet-386	24	20	the	the	DET
cet-386	24	21	optimal	optimal	ADJ
cet-386	24	22	conditions	condition	NOUN
cet-386	24	23	of	of	ADP
cet-386	24	24	formation	formation	NOUN
cet-386	24	25	of	of	ADP
cet-386	24	26	pbs	pbs	PROPN
cet-386	24	27	and	and	CCONJ
cet-386	24	28	cds	cd	NOUN
cet-386	24	29	nanoparticles	nanoparticle	NOUN
cet-386	24	30	in	in	ADP
cet-386	24	31	the	the	DET
cet-386	24	32	polymermatrix	polymermatrix	NOUN
cet-386	24	33	were	be	AUX
cet-386	24	34	determined	determine	VERB
cet-386	24	35	and	and	CCONJ
cet-386	24	36	structure	structure	NOUN
cet-386	24	37	and	and	CCONJ
cet-386	24	38	optical	optical	ADJ
cet-386	24	39	properties	property	NOUN
cet-386	24	40	of	of	ADP
cet-386	24	41	the	the	DET
cet-386	24	42	produced	produce	VERB
cet-386	24	43	hybrid	hybrid	ADJ
cet-386	24	44	polymer	polymer	NOUN
cet-386	24	45	nanocomposites	nanocomposite	NOUN
cet-386	24	46	were	be	AUX
cet-386	24	47	investigated	investigate	VERB
cet-386	24	48	.	.	PUNCT
cet-386	25	1	the	the	DET
cet-386	25	2	main	main	ADJ
cet-386	25	3	purpose	purpose	NOUN
cet-386	25	4	of	of	ADP
cet-386	25	5	the	the	DET
cet-386	25	6	present	present	ADJ
cet-386	25	7	work	work	NOUN
cet-386	25	8	was	be	AUX
cet-386	25	9	to	to	PART
cet-386	25	10	obtain	obtain	VERB
cet-386	25	11	polymeric	polymeric	ADJ
cet-386	25	12	luminescent	luminescent	NOUN
cet-386	25	13	films	film	NOUN
cet-386	25	14	of	of	ADP
cet-386	25	15	the	the	DET
cet-386	25	16	pp+pbs	pp+pb	NOUN
cet-386	25	17	/	/	SYM
cet-386	25	18	cds	cd	NOUN
cet-386	25	19	nanocomposites	nanocomposite	NOUN
cet-386	25	20	with	with	ADP
cet-386	25	21	wide	wide	ADJ
cet-386	25	22	spectral	spectral	ADJ
cet-386	25	23	diapason	diapason	NOUN
cet-386	25	24	.	.	PUNCT
cet-386	26	1	2	2	X
cet-386	26	2	.	.	X
cet-386	26	3	experimental	experimental	ADJ
cet-386	26	4	procedure	procedure	NOUN
cet-386	26	5	2.1	2.1	NUM
cet-386	26	6	materials	material	NOUN
cet-386	26	7	all	all	DET
cet-386	26	8	chemicals	chemical	NOUN
cet-386	26	9	were	be	AUX
cet-386	26	10	used	use	VERB
cet-386	26	11	as	as	SCONJ
cet-386	26	12	received	receive	VERB
cet-386	26	13	.	.	PUNCT
cet-386	27	1	isotactic	isotactic	ADJ
cet-386	27	2	polypropylene	polypropylene	NOUN
cet-386	27	3	(	(	PUNCT
cet-386	27	4	pp	pp	ADP
cet-386	27	5	grade	grade	NOUN
cet-386	27	6	moplen	moplen	PROPN
cet-386	27	7	hf500n	hf500n	PROPN
cet-386	27	8	,	,	PUNCT
cet-386	27	9	homopolymer	homopolymer	NOUN
cet-386	27	10	)	)	PUNCT
cet-386	27	11	;	;	PUNCT
cet-386	27	12	density	density	NOUN
cet-386	27	13	0,92g	0,92g	NOUN
cet-386	27	14	/	/	SYM
cet-386	27	15	cm3	cm3	NOUN
cet-386	27	16	at	at	ADP
cet-386	27	17	25	25	NUM
cet-386	27	18	°	°	NOUN
cet-386	27	19	c	c	NOUN
cet-386	27	20	,	,	PUNCT
cet-386	27	21	mw	mw	X
cet-386	27	22	=	=	SYM
cet-386	27	23	250000	250000	NUM
cet-386	27	24	,	,	PUNCT
cet-386	27	25	mn	mn	PROPN
cet-386	27	26	=	=	SYM
cet-386	27	27	67000	67000	NUM
cet-386	27	28	,	,	PUNCT
cet-386	27	29	melt	melt	VERB
cet-386	27	30	mass	mass	ADJ
cet-386	27	31	-	-	PUNCT
cet-386	27	32	flow	flow	NOUN
cet-386	27	33	ratemfr	ratemfr	NOUN
cet-386	27	34	=	=	PUNCT
cet-386	27	35	11,5	11,5	NUM
cet-386	27	36	g	g	NOUN
cet-386	27	37	/10	/10	SYM
cet-386	27	38	min	min	PROPN
cet-386	27	39	(	(	PUNCT
cet-386	27	40	2300	2300	NUM
cet-386	27	41	c	c	X
cet-386	27	42	,	,	PUNCT
cet-386	27	43	2,16	2,16	NUM
cet-386	27	44	kg	kg	NOUN
cet-386	27	45	)	)	PUNCT
cet-386	27	46	,	,	PUNCT
cet-386	27	47	melting	melt	VERB
cet-386	27	48	t=162	t=162	X
cet-386	27	49	°	°	NOUN
cet-386	27	50	c	c	NOUN
cet-386	27	51	)	)	PUNCT
cet-386	27	52	.	.	PUNCT
cet-386	28	1	lead	lead	NOUN
cet-386	28	2	acetate	acetate	NOUN
cet-386	28	3	pb(сн3coo)2,cadmium	pb(сн3coo)2,cadmium	NOUN
cet-386	28	4	chloride	chloride	NOUN
cet-386	28	5	(	(	PUNCT
cet-386	28	6	cdcl2x2,5h2o	cdcl2x2,5h2o	NOUN
cet-386	28	7	)	)	PUNCT
cet-386	28	8	,	,	PUNCT
cet-386	28	9	sodium	sodium	NOUN
cet-386	28	10	sulfide	sulfide	NOUN
cet-386	28	11	(	(	PUNCT
cet-386	28	12	na2sx9h2o	na2sx9h2o	PROPN
cet-386	28	13	)	)	PUNCT
cet-386	28	14	have	have	AUX
cet-386	28	15	been	be	AUX
cet-386	28	16	purchased	purchase	VERB
cet-386	28	17	from	from	ADP
cet-386	28	18	sigma	sigma	PROPN
cet-386	28	19	aldrich	aldrich	PROPN
cet-386	28	20	;	;	PUNCT
cet-386	28	21	deionized	deionize	VERB
cet-386	28	22	water	water	NOUN
cet-386	28	23	.	.	PUNCT
cet-386	29	1	2.2	2.2	NUM
cet-386	29	2	characterization	characterization	NOUN
cet-386	29	3	the	the	DET
cet-386	29	4	images	image	NOUN
cet-386	29	5	of	of	ADP
cet-386	29	6	the	the	DET
cet-386	29	7	samples	sample	NOUN
cet-386	29	8	have	have	AUX
cet-386	29	9	been	be	AUX
cet-386	29	10	obtained	obtain	VERB
cet-386	29	11	by	by	ADP
cet-386	29	12	a	a	DET
cet-386	29	13	scanning	scanning	NOUN
cet-386	29	14	electron	electron	NOUN
cet-386	29	15	microscopy	microscopy	NOUN
cet-386	29	16	(	(	PUNCT
cet-386	29	17	sem	sem	PROPN
cet-386	29	18	,	,	PUNCT
cet-386	29	19	jeol	jeol	PROPN
cet-386	29	20	jsm-7600	jsm-7600	NOUN
cet-386	29	21	f	f	X
cet-386	29	22	)	)	PUNCT
cet-386	29	23	.	.	PUNCT
cet-386	30	1	scanning	scanning	NOUN
cet-386	30	2	was	be	AUX
cet-386	30	3	performed	perform	VERB
cet-386	30	4	in	in	ADP
cet-386	30	5	lei	lei	PROPN
cet-386	30	6	mode	mode	NOUN
cet-386	30	7	at	at	ADP
cet-386	30	8	an	an	DET
cet-386	30	9	accelerating	accelerate	VERB
cet-386	30	10	voltage	voltage	NOUN
cet-386	30	11	of	of	ADP
cet-386	30	12	15	15	NUM
cet-386	30	13	kv	kv	NOUN
cet-386	30	14	and	and	CCONJ
cet-386	30	15	a	a	DET
cet-386	30	16	working	work	VERB
cet-386	30	17	distance	distance	NOUN
cet-386	30	18	of	of	ADP
cet-386	30	19	4.5mm,14,7	4.5mm,14,7	NOUN
cet-386	30	20	mm	mm	NOUN
cet-386	30	21	and	and	CCONJ
cet-386	30	22	15.1	15.1	NUM
cet-386	30	23	mm	mm	NOUN
cet-386	30	24	.	.	PUNCT
cet-386	31	1	energy	energy	PROPN
cet-386	31	2	dispersive	dispersive	PROPN
cet-386	31	3	micro	micro	NOUN
cet-386	31	4	-	-	ADJ
cet-386	31	5	x	x	ADJ
cet-386	31	6	-	-	NOUN
cet-386	31	7	ray	ray	NOUN
cet-386	31	8	analysis	analysis	NOUN
cet-386	31	9	was	be	AUX
cet-386	31	10	performed	perform	VERB
cet-386	31	11	using	use	VERB
cet-386	31	12	the	the	DET
cet-386	31	13	device	device	NOUN
cet-386	31	14	x	x	NOUN
cet-386	31	15	-	-	NOUN
cet-386	31	16	max	max	ADJ
cet-386	31	17	50	50	NUM
cet-386	31	18	(	(	PUNCT
cet-386	31	19	oxford	oxford	PROPN
cet-386	31	20	instruments	instrument	NOUN
cet-386	31	21	)	)	PUNCT
cet-386	31	22	.	.	PUNCT
cet-386	32	1	the	the	DET
cet-386	32	2	uv	uv	PROPN
cet-386	32	3	spectra	spectra	NOUN
cet-386	32	4	have	have	AUX
cet-386	32	5	been	be	AUX
cet-386	32	6	recorded	record	VERB
cet-386	32	7	on	on	ADP
cet-386	32	8	spectrophotometer	spectrophotometer	NOUN
cet-386	32	9	specord	specord	NOUN
cet-386	32	10	250	250	NUM
cet-386	32	11	plus	plus	NOUN
cet-386	32	12	.	.	PUNCT
cet-386	33	1	uv	uv	NOUN
cet-386	33	2	spectra	spectra	PROPN
cet-386	33	3	were	be	AUX
cet-386	33	4	recorded	record	VERB
cet-386	33	5	at	at	ADP
cet-386	33	6	200	200	NUM
cet-386	33	7	-	-	SYM
cet-386	33	8	700	700	NUM
cet-386	33	9	nm	nm	ADJ
cet-386	33	10	and	and	CCONJ
cet-386	33	11	ambient	ambient	ADJ
cet-386	33	12	temperature	temperature	NOUN
cet-386	33	13	.	.	PUNCT
cet-386	34	1	photoluminescent	photoluminescent	NOUN
cet-386	34	2	properties	property	NOUN
cet-386	34	3	of	of	ADP
cet-386	34	4	nanocomposite	nanocomposite	NOUN
cet-386	34	5	films	film	NOUN
cet-386	34	6	were	be	AUX
cet-386	34	7	examined	examine	VERB
cet-386	34	8	using	use	VERB
cet-386	34	9	a	a	DET
cet-386	34	10	spectrofluorometer	spectrofluorometer	NOUN
cet-386	34	11	varian	varian	PROPN
cet-386	34	12	cary	cary	PROPN
cet-386	34	13	eclipse	eclipse	NOUN
cet-386	34	14	at	at	ADP
cet-386	34	15	wavelength	wavelength	NOUN
cet-386	34	16	range	range	NOUN
cet-386	34	17	200	200	NUM
cet-386	34	18	-	-	SYM
cet-386	34	19	900	900	NUM
cet-386	34	20	nm	nm	NOUN
cet-386	34	21	.	.	PUNCT
cet-386	35	1	2.3	2.3	NUM
cet-386	35	2	synthesis	synthesis	NOUN
cet-386	35	3	of	of	ADP
cet-386	35	4	nanocomposites	nanocomposite	NOUN
cet-386	35	5	synthesis	synthesis	NOUN
cet-386	35	6	of	of	ADP
cet-386	35	7	hybrid	hybrid	ADJ
cet-386	35	8	semiconductor	semiconductor	NOUN
cet-386	35	9	nanocomposite	nanocomposite	NOUN
cet-386	35	10	materials	material	NOUN
cet-386	35	11	pp+pbs	pp+pb	NOUN
cet-386	35	12	/	/	SYM
cet-386	35	13	cds	cd	NOUN
cet-386	35	14	was	be	AUX
cet-386	35	15	carried	carry	VERB
cet-386	35	16	out	out	ADP
cet-386	35	17	by	by	ADP
cet-386	35	18	the	the	DET
cet-386	35	19	sorption	sorption	NOUN
cet-386	35	20	method	method	NOUN
cet-386	35	21	.	.	PUNCT
cet-386	36	1	the	the	DET
cet-386	36	2	synthesis	synthesis	NOUN
cet-386	36	3	was	be	AUX
cet-386	36	4	carried	carry	VERB
cet-386	36	5	out	out	ADP
cet-386	36	6	as	as	SCONJ
cet-386	36	7	follows	follow	VERB
cet-386	36	8	:	:	PUNCT
cet-386	36	9	in	in	ADP
cet-386	36	10	order	order	NOUN
cet-386	36	11	to	to	PART
cet-386	36	12	obtain	obtain	VERB
cet-386	36	13	pbs	pb	NOUN
cet-386	36	14	and	and	CCONJ
cet-386	36	15	cds	cd	NOUN
cet-386	36	16	nanoparticles	nanoparticle	NOUN
cet-386	36	17	in	in	ADP
cet-386	36	18	a	a	DET
cet-386	36	19	polymeric	polymeric	ADJ
cet-386	36	20	matrix	matrix	NOUN
cet-386	36	21	,	,	PUNCT
cet-386	36	22	sorption	sorption	NOUN
cet-386	36	23	of	of	ADP
cet-386	36	24	transition	transition	NOUN
cet-386	36	25	metal	metal	NOUN
cet-386	36	26	ions	ion	NOUN
cet-386	36	27	pb2	pb2	PROPN
cet-386	36	28	+	+	NOUN
cet-386	36	29	and	and	CCONJ
cet-386	36	30	cd2	cd2	PROPN
cet-386	36	31	+	+	NOUN
cet-386	36	32	into	into	ADP
cet-386	36	33	isotactic	isotactic	ADJ
cet-386	36	34	polypropylene	polypropylene	NOUN
cet-386	36	35	powders	powder	NOUN
cet-386	36	36	was	be	AUX
cet-386	36	37	firstly	firstly	ADV
cet-386	36	38	carried	carry	VERB
cet-386	36	39	out	out	ADP
cet-386	36	40	.	.	PUNCT
cet-386	37	1	the	the	DET
cet-386	37	2	production	production	NOUN
cet-386	37	3	of	of	ADP
cet-386	37	4	hybrid	hybrid	ADJ
cet-386	37	5	nanocomposites	nanocomposite	NOUN
cet-386	37	6	pp+pbs	pp+pb	NOUN
cet-386	37	7	/	/	SYM
cet-386	37	8	cds	cd	NOUN
cet-386	37	9	occurs	occur	VERB
cet-386	37	10	in	in	ADP
cet-386	37	11	subsequent	subsequent	ADJ
cet-386	37	12	stages	stage	NOUN
cet-386	37	13	:	:	PUNCT
cet-386	37	14	firstly	firstly	ADV
cet-386	37	15	thesynthesis	thesynthesis	NOUN
cet-386	37	16	of	of	ADP
cet-386	37	17	the	the	DET
cet-386	37	18	nanocomposites	nanocomposite	NOUN
cet-386	37	19	pp	pp	ADP
cet-386	37	20	/	/	SYM
cet-386	37	21	pbsand	pbsand	NOUN
cet-386	37	22	pp	pp	PROPN
cet-386	37	23	/	/	SYM
cet-386	37	24	cds	cd	NOUN
cet-386	37	25	,	,	PUNCT
cet-386	37	26	respectively	respectively	ADV
cet-386	37	27	,	,	PUNCT
cet-386	37	28	andthen	andthen	VERB
cet-386	37	29	the	the	DET
cet-386	37	30	mixing	mixing	NOUN
cet-386	37	31	of	of	ADP
cet-386	37	32	the	the	DET
cet-386	37	33	two	two	NUM
cet-386	37	34	previously	previously	ADV
cet-386	37	35	produced	produce	VERB
cet-386	37	36	nanocomposites	nanocomposite	NOUN
cet-386	37	37	.	.	PUNCT
cet-386	38	1	the	the	DET
cet-386	38	2	preparation	preparation	NOUN
cet-386	38	3	of	of	ADP
cet-386	38	4	pp	pp	PROPN
cet-386	38	5	/	/	SYM
cet-386	38	6	pbs	pbs	PROPN
cet-386	38	7	nanocomposites	nanocomposite	NOUN
cet-386	38	8	was	be	AUX
cet-386	38	9	carried	carry	VERB
cet-386	38	10	out	out	ADP
cet-386	38	11	as	as	SCONJ
cet-386	38	12	follows	follow	VERB
cet-386	38	13	.	.	PUNCT
cet-386	39	1	0.1	0.1	NUM
cet-386	39	2	g	g	NOUN
cet-386	39	3	of	of	ADP
cet-386	39	4	isotactic	isotactic	ADJ
cet-386	39	5	polypropylene	polypropylene	NOUN
cet-386	39	6	powder	powder	NOUN
cet-386	39	7	was	be	AUX
cet-386	39	8	first	first	ADV
cet-386	39	9	treated	treat	VERB
cet-386	39	10	with	with	ADP
cet-386	39	11	20	20	NUM
cet-386	39	12	ml	ml	NUM
cet-386	39	13	0.01	0.01	NUM
cet-386	39	14	m	m	NOUN
cet-386	39	15	pb(aso)2	pb(aso)2	NOUN
cet-386	39	16	solution	solution	NOUN
cet-386	39	17	and	and	CCONJ
cet-386	39	18	mixed	mix	VERB
cet-386	39	19	intensively	intensively	ADV
cet-386	39	20	at	at	ADP
cet-386	39	21	room	room	NOUN
cet-386	39	22	temperature	temperature	NOUN
cet-386	39	23	for	for	ADP
cet-386	39	24	30	30	NUM
cet-386	39	25	minutes	minute	NOUN
cet-386	39	26	.	.	PUNCT
cet-386	40	1	then	then	ADV
cet-386	40	2	the	the	DET
cet-386	40	3	solution	solution	NOUN
cet-386	40	4	of	of	ADP
cet-386	40	5	the	the	DET
cet-386	40	6	polypropylene	polypropylene	NOUN
cet-386	40	7	powder	powder	NOUN
cet-386	40	8	in	in	ADP
cet-386	40	9	the	the	DET
cet-386	40	10	lead	lead	ADJ
cet-386	40	11	acetate	acetate	NOUN
cet-386	40	12	solution	solution	NOUN
cet-386	40	13	was	be	AUX
cet-386	40	14	transferred	transfer	VERB
cet-386	40	15	to	to	ADP
cet-386	40	16	a	a	DET
cet-386	40	17	petri	petri	ADJ
cet-386	40	18	dish	dish	NOUN
cet-386	40	19	and	and	CCONJ
cet-386	40	20	left	leave	VERB
cet-386	40	21	for	for	ADP
cet-386	40	22	a	a	DET
cet-386	40	23	day	day	NOUN
cet-386	40	24	for	for	ADP
cet-386	40	25	deeper	deep	ADJ
cet-386	40	26	sorption	sorption	NOUN
cet-386	40	27	of	of	ADP
cet-386	40	28	pb2	pb2	PROPN
cet-386	40	29	+	+	NOUN
cet-386	40	30	ions	ion	NOUN
cet-386	40	31	.	.	PUNCT
cet-386	41	1	after	after	ADP
cet-386	41	2	24	24	NUM
cet-386	41	3	hours	hour	NOUN
cet-386	41	4	,	,	PUNCT
cet-386	41	5	the	the	DET
cet-386	41	6	powders	powder	NOUN
cet-386	41	7	were	be	AUX
cet-386	41	8	filtered	filter	VERB
cet-386	41	9	and	and	CCONJ
cet-386	41	10	washed	wash	VERB
cet-386	41	11	with	with	ADP
cet-386	41	12	distilled	distil	VERB
cet-386	41	13	water	water	NOUN
cet-386	41	14	several	several	ADJ
cet-386	41	15	times	time	NOUN
cet-386	41	16	to	to	PART
cet-386	41	17	remove	remove	VERB
cet-386	41	18	loosely	loosely	ADV
cet-386	41	19	bound	bind	VERB
cet-386	41	20	pb2	pb2	PROPN
cet-386	41	21	+	+	NOUN
cet-386	41	22	ions	ion	NOUN
cet-386	41	23	.	.	PUNCT
cet-386	42	1	the	the	DET
cet-386	42	2	powder	powder	NOUN
cet-386	42	3	was	be	AUX
cet-386	42	4	then	then	ADV
cet-386	42	5	dried	dry	VERB
cet-386	42	6	in	in	ADP
cet-386	42	7	the	the	DET
cet-386	42	8	air	air	NOUN
cet-386	42	9	for	for	ADP
cet-386	42	10	24	24	NUM
cet-386	42	11	hours	hour	NOUN
cet-386	42	12	.	.	PUNCT
cet-386	43	1	afterwards	afterwards	ADV
cet-386	43	2	,	,	PUNCT
cet-386	43	3	the	the	DET
cet-386	43	4	dried	dry	VERB
cet-386	43	5	polypropylene	polypropylene	NOUN
cet-386	43	6	powder	powder	NOUN
cet-386	43	7	containing	contain	VERB
cet-386	43	8	pb2	pb2	PROPN
cet-386	43	9	+	+	NOUN
cet-386	43	10	ions	ion	NOUN
cet-386	43	11	was	be	AUX
cet-386	43	12	treated	treat	VERB
cet-386	43	13	with	with	ADP
cet-386	43	14	20	20	NUM
cet-386	43	15	ml	ml	NUM
cet-386	43	16	0.01	0.01	NUM
cet-386	43	17	m	m	NOUN
cet-386	43	18	na2s	na2s	NOUN
cet-386	43	19	solution	solution	NOUN
cet-386	43	20	and	and	CCONJ
cet-386	43	21	vigorously	vigorously	ADV
cet-386	43	22	mixed	mixed	ADJ
cet-386	43	23	for	for	ADP
cet-386	43	24	30	30	NUM
cet-386	43	25	min	min	NOUN
cet-386	43	26	.	.	PROPN
cet-386	43	27	similarly	similarly	ADV
cet-386	43	28	,	,	PUNCT
cet-386	43	29	the	the	DET
cet-386	43	30	powder	powder	NOUN
cet-386	43	31	was	be	AUX
cet-386	43	32	left	leave	VERB
cet-386	43	33	for	for	ADP
cet-386	43	34	24	24	NUM
cet-386	43	35	hours	hour	NOUN
cet-386	43	36	for	for	ADP
cet-386	43	37	complete	complete	ADJ
cet-386	43	38	sorption	sorption	NOUN
cet-386	43	39	of	of	ADP
cet-386	43	40	s2ions	s2ion	NOUN
cet-386	43	41	.	.	PUNCT
cet-386	44	1	the	the	DET
cet-386	44	2	powder	powder	NOUN
cet-386	44	3	was	be	AUX
cet-386	44	4	then	then	ADV
cet-386	44	5	rinsed	rinse	VERB
cet-386	44	6	with	with	ADP
cet-386	44	7	distilled	distil	VERB
cet-386	44	8	water	water	NOUN
cet-386	44	9	and	and	CCONJ
cet-386	44	10	dried	dry	VERB
cet-386	44	11	overnight	overnight	ADV
cet-386	44	12	.	.	PUNCT
cet-386	45	1	as	as	ADP
cet-386	45	2	a	a	DET
cet-386	45	3	result	result	NOUN
cet-386	45	4	,	,	PUNCT
cet-386	45	5	a	a	DET
cet-386	45	6	pbs	pbs	NOUN
cet-386	45	7	nanophase	nanophase	NOUN
cet-386	45	8	was	be	AUX
cet-386	45	9	formed	form	VERB
cet-386	45	10	in	in	ADP
cet-386	45	11	the	the	DET
cet-386	45	12	pores	pore	NOUN
cet-386	45	13	of	of	ADP
cet-386	45	14	the	the	DET
cet-386	45	15	isotactic	isotactic	ADJ
cet-386	45	16	polypropylene	polypropylene	NOUN
cet-386	45	17	powder	powder	NOUN
cet-386	45	18	.	.	PUNCT
cet-386	46	1	by	by	ADP
cet-386	46	2	varying	vary	VERB
cet-386	46	3	the	the	DET
cet-386	46	4	concentration	concentration	NOUN
cet-386	46	5	of	of	ADP
cet-386	46	6	solutions	solution	NOUN
cet-386	46	7	of	of	ADP
cet-386	46	8	pb(aso)2	pb(aso)2	NOUN
cet-386	46	9	and	and	CCONJ
cet-386	46	10	na2s	na2s	PROPN
cet-386	46	11	,	,	PUNCT
cet-386	46	12	it	it	PRON
cet-386	46	13	was	be	AUX
cet-386	46	14	possible	possible	ADJ
cet-386	46	15	to	to	PART
cet-386	46	16	obtain	obtain	VERB
cet-386	46	17	nanoparticles	nanoparticle	NOUN
cet-386	46	18	with	with	ADP
cet-386	46	19	sufficiently	sufficiently	ADV
cet-386	46	20	uniform	uniform	ADJ
cet-386	46	21	distribution	distribution	NOUN
cet-386	46	22	in	in	ADP
cet-386	46	23	the	the	DET
cet-386	46	24	polymer	polymer	NOUN
cet-386	46	25	matrix	matrix	NOUN
cet-386	46	26	(	(	PUNCT
cet-386	46	27	a.m.	a.m.	NOUN
cet-386	46	28	maharramov	maharramov	PROPN
cet-386	46	29	et	et	PROPN
cet-386	46	30	al	al	PROPN
cet-386	46	31	,	,	PUNCT
cet-386	46	32	2014	2014	NUM
cet-386	46	33	,	,	PUNCT
cet-386	46	34	2016	2016	NUM
cet-386	46	35	)	)	PUNCT
cet-386	46	36	.	.	PUNCT
cet-386	47	1	in	in	ADP
cet-386	47	2	a	a	DET
cet-386	47	3	similar	similar	ADJ
cet-386	47	4	way	way	NOUN
cet-386	47	5	,	,	PUNCT
cet-386	47	6	nanocomposites	nanocomposite	NOUN
cet-386	47	7	based	base	VERB
cet-386	47	8	on	on	ADP
cet-386	47	9	pp	pp	PROPN
cet-386	47	10	/	/	SYM
cet-386	47	11	cds	cd	NOUN
cet-386	47	12	were	be	AUX
cet-386	47	13	synthesized	synthesize	VERB
cet-386	47	14	.	.	PUNCT
cet-386	48	1	0.1	0.1	NUM
cet-386	48	2	g	g	NOUN
cet-386	48	3	of	of	ADP
cet-386	48	4	polypropylene	polypropylene	NOUN
cet-386	48	5	was	be	AUX
cet-386	48	6	gradually	gradually	ADV
cet-386	48	7	treated	treat	VERB
cet-386	48	8	with	with	ADP
cet-386	48	9	solutions	solution	NOUN
cet-386	48	10	of	of	ADP
cet-386	48	11	20	20	NUM
cet-386	48	12	ml	ml	NUM
cet-386	48	13	0.01	0.01	NUM
cet-386	48	14	m	m	NOUN
cet-386	48	15	cdcl2×	cdcl2×	ADJ
cet-386	48	16	2.5h2o	2.5h2o	PROPN
cet-386	48	17	and	and	CCONJ
cet-386	48	18	20	20	NUM
cet-386	48	19	ml	ml	NOUN
cet-386	48	20	0.01	0.01	NUM
cet-386	48	21	m	m	NOUN
cet-386	48	22	na2s	na2s	NOUN
cet-386	48	23	.	.	PUNCT
cet-386	49	1	formation	formation	NOUN
cet-386	49	2	of	of	ADP
cet-386	49	3	nanophases	nanophase	NOUN
cet-386	49	4	pbs	pbs	PROPN
cet-386	49	5	andcds	andcds	PROPN
cet-386	49	6	in	in	ADP
cet-386	49	7	the	the	DET
cet-386	49	8	pores	pore	NOUN
cet-386	49	9	of	of	ADP
cet-386	49	10	isotactic	isotactic	ADJ
cet-386	49	11	polypropylene	polypropylene	NOUN
cet-386	49	12	occurs	occur	VERB
cet-386	49	13	according	accord	VERB
cet-386	49	14	to	to	ADP
cet-386	49	15	the	the	DET
cet-386	49	16	following	follow	VERB
cet-386	49	17	reactions	reaction	NOUN
cet-386	49	18	:	:	PUNCT
cet-386	50	1	pb(сн3coo)2	pb(сн3coo)2	PROPN
cet-386	51	1	+	+	NUM
cet-386	52	1	na2s	na2s	PROPN
cet-386	52	2	=	=	SYM
cet-386	52	3	pbs↓	pbs↓	X
cet-386	52	4	+	+	CCONJ
cet-386	52	5	2сн3coona	2сн3coona	NUM
cet-386	52	6	cdcl2	cdcl2	NOUN
cet-386	52	7	+	+	X
cet-386	52	8	na2s	na2s	PROPN
cet-386	52	9	=	=	SYM
cet-386	52	10	cds↓+2nacl	cds↓+2nacl	PROPN
cet-386	52	11	to	to	PART
cet-386	52	12	synthesize	synthesize	VERB
cet-386	52	13	hybrid	hybrid	ADJ
cet-386	52	14	nanocomposites	nanocomposite	NOUN
cet-386	52	15	based	base	VERB
cet-386	52	16	on	on	ADP
cet-386	52	17	pp+pbs	pp+pb	NOUN
cet-386	52	18	/	/	SYM
cet-386	52	19	cds	cd	NOUN
cet-386	52	20	,	,	PUNCT
cet-386	52	21	the	the	DET
cet-386	52	22	polymer	polymer	NOUN
cet-386	52	23	nanopowders	nanopowder	NOUN
cet-386	52	24	pp	pp	CCONJ
cet-386	52	25	/	/	SYM
cet-386	52	26	pbs	pbs	PROPN
cet-386	52	27	and	and	CCONJ
cet-386	52	28	pp	pp	ADV
cet-386	52	29	/	/	PUNCT
cet-386	52	30	cdsat	cdsat	VERB
cet-386	52	31	a	a	DET
cet-386	52	32	weight	weight	NOUN
cet-386	52	33	ratio	ratio	NOUN
cet-386	52	34	equal	equal	ADJ
cet-386	52	35	to	to	ADP
cet-386	52	36	1	1	NUM
cet-386	52	37	were	be	AUX
cet-386	52	38	mechanically	mechanically	ADV
cet-386	52	39	mixed	mixed	ADJ
cet-386	52	40	.	.	PUNCT
cet-386	53	1	nanocomposite	nanocomposite	PROPN
cet-386	53	2	films	film	NOUN
cet-386	53	3	based	base	VERB
cet-386	53	4	on	on	ADP
cet-386	53	5	pp+pbs	pp+pb	NOUN
cet-386	53	6	/	/	SYM
cet-386	53	7	cds	cd	NOUN
cet-386	53	8	were	be	AUX
cet-386	53	9	obtained	obtain	VERB
cet-386	53	10	by	by	ADP
cet-386	53	11	hot	hot	ADJ
cet-386	53	12	pressing	pressing	NOUN
cet-386	53	13	at	at	ADP
cet-386	53	14	the	the	DET
cet-386	53	15	melting	melting	NOUN
cet-386	53	16	temperature	temperature	NOUN
cet-386	53	17	of	of	ADP
cet-386	53	18	polypropylene	polypropylene	NOUN
cet-386	53	19	and	and	CCONJ
cet-386	53	20	at	at	ADP
cet-386	53	21	a	a	DET
cet-386	53	22	pressure	pressure	NOUN
cet-386	53	23	of	of	ADP
cet-386	53	24	15	15	NUM
cet-386	53	25	mpa	mpa	NOUN
cet-386	53	26	.	.	PUNCT
cet-386	54	1	the	the	DET
cet-386	54	2	films	film	NOUN
cet-386	54	3	were	be	AUX
cet-386	54	4	cooled	cool	VERB
cet-386	54	5	in	in	ADP
cet-386	54	6	water	water	NOUN
cet-386	54	7	at	at	ADP
cet-386	54	8	a	a	DET
cet-386	54	9	cooling	cool	VERB
cet-386	54	10	rate	rate	NOUN
cet-386	54	11	of	of	ADP
cet-386	54	12	200	200	NUM
cet-386	54	13	deg	deg	NOUN
cet-386	54	14	/	/	SYM
cet-386	54	15	min	min	PROPN
cet-386	54	16	.	.	PROPN
cet-386	54	17	3	3	NUM
cet-386	54	18	.	.	NOUN
cet-386	54	19	results	result	NOUN
cet-386	54	20	and	and	CCONJ
cet-386	54	21	discussion	discussion	NOUN
cet-386	54	22	figure	figure	NOUN
cet-386	54	23	1	1	NUM
cet-386	54	24	shows	show	VERB
cet-386	54	25	the	the	DET
cet-386	54	26	uv	uv	PROPN
cet-386	54	27	spectra	spectra	NOUN
cet-386	54	28	of	of	ADP
cet-386	54	29	polymer	polymer	NOUN
cet-386	54	30	nanocomposites	nanocomposite	NOUN
cet-386	54	31	pp	pp	ADP
cet-386	54	32	/	/	SYM
cet-386	54	33	pbs	pbs	PROPN
cet-386	54	34	,	,	PUNCT
cet-386	54	35	pp	pp	PROPN
cet-386	54	36	/	/	SYM
cet-386	54	37	cds	cd	NOUN
cet-386	54	38	and	and	CCONJ
cet-386	54	39	pp	pp	PROPN
cet-386	54	40	+	+	CCONJ
cet-386	54	41	pbs	pbs	PROPN
cet-386	54	42	/	/	SYM
cet-386	54	43	cds	cds	PROPN
cet-386	54	44	.	.	PUNCT
cet-386	55	1	it	it	PRON
cet-386	55	2	is	be	AUX
cet-386	55	3	known	know	VERB
cet-386	55	4	that	that	SCONJ
cet-386	55	5	a	a	DET
cet-386	55	6	decrease	decrease	NOUN
cet-386	55	7	of	of	ADP
cet-386	55	8	the	the	DET
cet-386	55	9	semiconductor	semiconductor	NOUN
cet-386	55	10	nanoparticles	nanoparticle	NOUN
cet-386	55	11	size	size	NOUN
cet-386	55	12	leads	lead	VERB
cet-386	55	13	to	to	ADP
cet-386	55	14	a	a	DET
cet-386	55	15	shift	shift	NOUN
cet-386	55	16	in	in	ADP
cet-386	55	17	the	the	DET
cet-386	55	18	edge	edge	NOUN
cet-386	55	19	of	of	ADP
cet-386	55	20	the	the	DET
cet-386	55	21	uv	uv	NOUN
cet-386	55	22	spectrum	spectrum	NOUN
cet-386	55	23	to	to	ADP
cet-386	55	24	the	the	DET
cet-386	55	25	62	62	NUM
cet-386	55	26	blue	blue	ADJ
cet-386	55	27	part	part	NOUN
cet-386	55	28	of	of	ADP
cet-386	55	29	the	the	DET
cet-386	55	30	spectrum	spectrum	NOUN
cet-386	55	31	(	(	PUNCT
cet-386	55	32	t.serrano	t.serrano	NOUN
cet-386	55	33	,	,	PUNCT
cet-386	55	34	et.al	et.al	PROPN
cet-386	55	35	,	,	PUNCT
cet-386	55	36	2014).it	2014).it	NOUN
cet-386	55	37	is	be	AUX
cet-386	55	38	seen	see	VERB
cet-386	55	39	from	from	ADP
cet-386	55	40	figure	figure	NOUN
cet-386	55	41	1	1	NUM
cet-386	55	42	(	(	PUNCT
cet-386	55	43	a	a	NOUN
cet-386	55	44	)	)	PUNCT
cet-386	55	45	that	that	SCONJ
cet-386	55	46	for	for	ADP
cet-386	55	47	the	the	DET
cet-386	55	48	nanocomposite	nanocomposite	NOUN
cet-386	55	49	pp	pp	PROPN
cet-386	55	50	/	/	SYM
cet-386	55	51	pbs	pbs	PROPN
cet-386	55	52	,	,	PUNCT
cet-386	55	53	the	the	DET
cet-386	55	54	absorption	absorption	NOUN
cet-386	55	55	edge	edge	NOUN
cet-386	55	56	shifts	shift	NOUN
cet-386	55	57	to	to	ADP
cet-386	55	58	the	the	DET
cet-386	55	59	blue	blue	ADJ
cet-386	55	60	part	part	NOUN
cet-386	55	61	of	of	ADP
cet-386	55	62	the	the	DET
cet-386	55	63	spectrum	spectrum	NOUN
cet-386	55	64	.	.	PUNCT
cet-386	56	1	from	from	ADP
cet-386	56	2	the	the	DET
cet-386	56	3	uv	uv	NOUN
cet-386	56	4	spectra	spectra	NOUN
cet-386	56	5	by	by	ADP
cet-386	56	6	extrapolation	extrapolation	NOUN
cet-386	56	7	,	,	PUNCT
cet-386	56	8	the	the	DET
cet-386	56	9	width	width	NOUN
cet-386	56	10	of	of	ADP
cet-386	56	11	the	the	DET
cet-386	56	12	forbidden	forbid	VERB
cet-386	56	13	band	band	NOUN
cet-386	56	14	was	be	AUX
cet-386	56	15	calculated	calculate	VERB
cet-386	56	16	for	for	SCONJ
cet-386	56	17	polymer	polymer	NOUN
cet-386	56	18	nanocomposites.optical	nanocomposites.optical	ADJ
cet-386	56	19	band	band	NOUN
cet-386	56	20	gap	gap	NOUN
cet-386	56	21	of	of	ADP
cet-386	56	22	nanocomposites	nanocomposite	NOUN
cet-386	56	23	was	be	AUX
cet-386	56	24	determined	determine	VERB
cet-386	56	25	by	by	ADP
cet-386	56	26	using	use	VERB
cet-386	56	27	following	follow	VERB
cet-386	56	28	equation	equation	NOUN
cet-386	56	29	eq(1	eq(1	NOUN
cet-386	56	30	):	):	PUNCT
cet-386	56	31	/	/	PUNCT
cet-386	56	32	(	(	PUNCT
cet-386	56	33	1	1	NUM
cet-386	56	34	)	)	PUNCT
cet-386	56	35	where	where	SCONJ
cet-386	56	36	a	a	PRON
cet-386	56	37	is	be	AUX
cet-386	56	38	a	a	DET
cet-386	56	39	constant	constant	ADJ
cet-386	56	40	and	and	CCONJ
cet-386	56	41	n=1/2	n=1/2	NOUN
cet-386	56	42	for	for	ADP
cet-386	56	43	allowed	allow	VERB
cet-386	56	44	direct	direct	VERB
cet-386	56	45	transition.the	transition.the	DET
cet-386	56	46	variation	variation	NOUN
cet-386	56	47	of	of	ADP
cet-386	56	48	optical	optical	ADJ
cet-386	56	49	absorption	absorption	NOUN
cet-386	56	50	coefficient	coefficient	NOUN
cet-386	56	51	with	with	ADP
cet-386	56	52	wavelength	wavelength	NOUN
cet-386	56	53	was	be	AUX
cet-386	56	54	also	also	ADV
cet-386	56	55	analysed	analyse	VERB
cet-386	56	56	in	in	ADP
cet-386	56	57	order	order	NOUN
cet-386	56	58	to	to	PART
cet-386	56	59	find	find	VERB
cet-386	56	60	out	out	ADP
cet-386	56	61	the	the	DET
cet-386	56	62	nature	nature	NOUN
cet-386	56	63	of	of	ADP
cet-386	56	64	the	the	DET
cet-386	56	65	electronic	electronic	ADJ
cet-386	56	66	transition	transition	NOUN
cet-386	56	67	across	across	ADP
cet-386	56	68	the	the	DET
cet-386	56	69	optical	optical	ADJ
cet-386	56	70	band	band	NOUN
cet-386	56	71	gap	gap	NOUN
cet-386	56	72	.	.	PUNCT
cet-386	57	1	figure	figure	NOUN
cet-386	57	2	1	1	NUM
cet-386	57	3	(	(	PUNCT
cet-386	57	4	b	b	NOUN
cet-386	57	5	)	)	PUNCT
cet-386	57	6	reports	report	VERB
cet-386	57	7	the	the	DET
cet-386	57	8	plot	plot	NOUN
cet-386	57	9	of	of	ADP
cet-386	57	10	(	(	PUNCT
cet-386	57	11	αhν)2	αhν)2	PROPN
cet-386	57	12	versus	versus	ADP
cet-386	57	13	the	the	DET
cet-386	57	14	energy	energy	NOUN
cet-386	57	15	for	for	ADP
cet-386	57	16	the	the	DET
cet-386	57	17	nanocomposite	nanocomposite	NOUN
cet-386	57	18	samples	sample	NOUN
cet-386	57	19	.	.	PUNCT
cet-386	58	1	by	by	ADP
cet-386	58	2	extrapolating	extrapolate	VERB
cet-386	58	3	the	the	DET
cet-386	58	4	linear	linear	ADJ
cet-386	58	5	portion	portion	NOUN
cet-386	58	6	near	near	ADP
cet-386	58	7	the	the	DET
cet-386	58	8	onset	onset	NOUN
cet-386	58	9	of	of	ADP
cet-386	58	10	absorption	absorption	NOUN
cet-386	58	11	edge	edge	NOUN
cet-386	58	12	to	to	ADP
cet-386	58	13	the	the	DET
cet-386	58	14	energy	energy	NOUN
cet-386	58	15	axis	axis	NOUN
cet-386	58	16	the	the	DET
cet-386	58	17	band	band	NOUN
cet-386	58	18	gap	gap	NOUN
cet-386	58	19	energy	energy	NOUN
cet-386	58	20	of	of	ADP
cet-386	58	21	nanocomposite	nanocomposite	NOUN
cet-386	58	22	samples	sample	NOUN
cet-386	58	23	can	can	AUX
cet-386	58	24	be	be	AUX
cet-386	58	25	optioned	optione	VERB
cet-386	58	26	(	(	PUNCT
cet-386	58	27	yasharazizian	yasharazizian	ADJ
cet-386	58	28	,	,	PUNCT
cet-386	58	29	et	et	PROPN
cet-386	58	30	al,2007).it	al,2007).it	PROPN
cet-386	58	31	was	be	AUX
cet-386	58	32	found	find	VERB
cet-386	58	33	that	that	SCONJ
cet-386	58	34	the	the	DET
cet-386	58	35	band	band	NOUN
cet-386	58	36	gap	gap	NOUN
cet-386	58	37	is	be	AUX
cet-386	58	38	1.65	1.65	NUM
cet-386	58	39	ev	ev	NOUN
cet-386	58	40	for	for	ADP
cet-386	58	41	pp	pp	PROPN
cet-386	58	42	/	/	SYM
cet-386	58	43	pbs	pbs	PROPN
cet-386	58	44	nanocomposites	nanocomposite	NOUN
cet-386	58	45	,	,	PUNCT
cet-386	58	46	2.6	2.6	NUM
cet-386	58	47	ev	ev	INTJ
cet-386	58	48	for	for	ADP
cet-386	58	49	pp	pp	PROPN
cet-386	58	50	/	/	SYM
cet-386	58	51	cds	cd	NOUN
cet-386	58	52	and	and	CCONJ
cet-386	58	53	3.0	3.0	NUM
cet-386	58	54	ev	ev	INTJ
cet-386	58	55	for	for	ADP
cet-386	58	56	pp+pbs	pp+pb	NOUN
cet-386	58	57	/	/	SYM
cet-386	58	58	cds	cd	NOUN
cet-386	58	59	nanocomposite	nanocomposite	NOUN
cet-386	58	60	.	.	PUNCT
cet-386	59	1	(	(	PUNCT
cet-386	59	2	a	a	X
cet-386	59	3	)	)	PUNCT
cet-386	59	4	(	(	PUNCT
cet-386	59	5	b	b	NOUN
cet-386	59	6	)	)	PUNCT
cet-386	59	7	figure1	figure1	PROPN
cet-386	59	8	.	.	PUNCT
cet-386	60	1	uv	uv	NOUN
cet-386	60	2	absorbtions	absorbtion	NOUN
cet-386	60	3	spectra	spectra	NOUN
cet-386	60	4	(	(	PUNCT
cet-386	60	5	a	a	NOUN
cet-386	60	6	)	)	PUNCT
cet-386	60	7	and	and	CCONJ
cet-386	60	8	band	band	NOUN
cet-386	60	9	gap	gap	NOUN
cet-386	60	10	calculation	calculation	NOUN
cet-386	60	11	(	(	PUNCT
cet-386	60	12	b	b	NOUN
cet-386	60	13	)	)	PUNCT
cet-386	60	14	for	for	ADP
cet-386	60	15	pp	pp	PROPN
cet-386	60	16	/	/	SYM
cet-386	60	17	pbs	pbs	PROPN
cet-386	60	18	,	,	PUNCT
cet-386	60	19	pp	pp	CCONJ
cet-386	60	20	/	/	SYM
cet-386	60	21	cds	cd	NOUN
cet-386	60	22	and	and	CCONJ
cet-386	60	23	pp+pbs	pp+pb	NOUN
cet-386	60	24	/	/	SYM
cet-386	60	25	cds	cd	NOUN
cet-386	60	26	nanocomposites	nanocomposite	NOUN
cet-386	60	27	.	.	PUNCT
cet-386	61	1	the	the	DET
cet-386	61	2	morphology	morphology	NOUN
cet-386	61	3	of	of	ADP
cet-386	61	4	nanocomposites	nanocomposite	NOUN
cet-386	61	5	and	and	CCONJ
cet-386	61	6	the	the	DET
cet-386	61	7	distribution	distribution	NOUN
cet-386	61	8	of	of	ADP
cet-386	61	9	nanoparticles	nanoparticle	NOUN
cet-386	61	10	in	in	ADP
cet-386	61	11	a	a	DET
cet-386	61	12	polymer	polymer	NOUN
cet-386	61	13	matrix	matrix	NOUN
cet-386	61	14	were	be	AUX
cet-386	61	15	also	also	ADV
cet-386	61	16	studied	study	VERB
cet-386	61	17	by	by	ADP
cet-386	61	18	means	mean	NOUN
cet-386	61	19	of	of	ADP
cet-386	61	20	scanning	scan	VERB
cet-386	61	21	electron	electron	NOUN
cet-386	61	22	microscopy	microscopy	NOUN
cet-386	61	23	(	(	PUNCT
cet-386	61	24	sem	sem	NOUN
cet-386	61	25	)	)	PUNCT
cet-386	61	26	.	.	PUNCT
cet-386	62	1	sem	sem	NOUN
cet-386	62	2	images	image	NOUN
cet-386	62	3	of	of	ADP
cet-386	62	4	nanocomposites	nanocomposite	NOUN
cet-386	62	5	pp	pp	ADP
cet-386	62	6	/	/	SYM
cet-386	62	7	pbs	pbs	PROPN
cet-386	62	8	in	in	ADP
cet-386	62	9	figure	figure	NOUN
cet-386	62	10	2	2	NUM
cet-386	62	11	show	show	NOUN
cet-386	62	12	average	average	ADJ
cet-386	62	13	size	size	NOUN
cet-386	62	14	of	of	ADP
cet-386	62	15	nanoparticlespbs	nanoparticlespb	NOUN
cet-386	62	16	in	in	ADP
cet-386	62	17	the	the	DET
cet-386	62	18	polypropylene	polypropylene	NOUN
cet-386	62	19	matrix	matrix	NOUN
cet-386	62	20	in	in	ADP
cet-386	62	21	the	the	DET
cet-386	62	22	range	range	NOUN
cet-386	62	23	13	13	NUM
cet-386	62	24	-	-	SYM
cet-386	62	25	18	18	NUM
cet-386	62	26	nm	nm	NOUN
cet-386	62	27	.	.	PUNCT
cet-386	63	1	figure	figure	VERB
cet-386	63	2	3.reports	3.reports	NUM
cet-386	63	3	the	the	DET
cet-386	63	4	eds	ed	NOUN
cet-386	63	5	spectrum	spectrum	NOUN
cet-386	63	6	of	of	ADP
cet-386	63	7	nanocomposite	nanocomposite	PROPN
cet-386	63	8	pp	pp	PROPN
cet-386	63	9	/	/	SYM
cet-386	63	10	pbs	pbs	PROPN
cet-386	63	11	.	.	PUNCT
cet-386	64	1	from	from	ADP
cet-386	64	2	the	the	DET
cet-386	64	3	eds	ed	NOUN
cet-386	64	4	spectrum	spectrum	NOUN
cet-386	64	5	it	it	PRON
cet-386	64	6	can	can	AUX
cet-386	64	7	be	be	AUX
cet-386	64	8	seen	see	VERB
cet-386	64	9	that	that	SCONJ
cet-386	64	10	the	the	DET
cet-386	64	11	composite	composite	ADJ
cet-386	64	12	containspb	containspb	NOUN
cet-386	64	13	and	and	CCONJ
cet-386	64	14	s	s	NOUN
cet-386	64	15	as	as	ADP
cet-386	64	16	the	the	DET
cet-386	64	17	main	main	ADJ
cet-386	64	18	elements	element	NOUN
cet-386	64	19	.	.	PUNCT
cet-386	65	1	figure	figure	VERB
cet-386	65	2	2.sem	2.sem	NOUN
cet-386	65	3	images	image	NOUN
cet-386	65	4	of	of	ADP
cet-386	65	5	pp	pp	ADP
cet-386	65	6	/	/	SYM
cet-386	65	7	pbs	pbs	PROPN
cet-386	65	8	nanocomposite	nanocomposite	PROPN
cet-386	65	9	63	63	NUM
cet-386	65	10	figure	figure	NOUN
cet-386	65	11	3	3	NUM
cet-386	65	12	.	.	PUNCT
cet-386	66	1	eds	ed	NOUN
cet-386	66	2	spectra	spectra	NOUN
cet-386	66	3	of	of	ADP
cet-386	66	4	pp	pp	PROPN
cet-386	66	5	/	/	SYM
cet-386	66	6	pbs	pbs	PROPN
cet-386	66	7	nanocomposite	nanocomposite	PROPN
cet-386	66	8	figure	figure	NOUN
cet-386	66	9	4	4	NUM
cet-386	66	10	shows	show	VERB
cet-386	66	11	sem	sem	NOUN
cet-386	66	12	images	image	NOUN
cet-386	66	13	of	of	ADP
cet-386	66	14	nanocomposites	nanocomposite	NOUN
cet-386	66	15	pp	pp	ADP
cet-386	66	16	/	/	SYM
cet-386	66	17	cds	cd	NOUN
cet-386	66	18	.	.	PUNCT
cet-386	67	1	cdsnanoparticles	cdsnanoparticle	NOUN
cet-386	67	2	in	in	ADP
cet-386	67	3	the	the	DET
cet-386	67	4	polypropylene	polypropylene	NOUN
cet-386	67	5	matrix	matrix	NOUN
cet-386	67	6	in	in	ADP
cet-386	67	7	the	the	DET
cet-386	67	8	range	range	NOUN
cet-386	67	9	size	size	NOUN
cet-386	67	10	16	16	NUM
cet-386	67	11	-	-	SYM
cet-386	67	12	26	26	NUM
cet-386	67	13	nm	nm	NOUN
cet-386	67	14	can	can	AUX
cet-386	67	15	be	be	AUX
cet-386	67	16	noticed	notice	VERB
cet-386	67	17	.	.	PUNCT
cet-386	68	1	figure	figure	NOUN
cet-386	68	2	5	5	NUM
cet-386	68	3	shows	show	VERB
cet-386	68	4	the	the	DET
cet-386	68	5	eds	ed	NOUN
cet-386	68	6	spectrum	spectrum	NOUN
cet-386	68	7	of	of	ADP
cet-386	68	8	nanocomposite	nanocomposite	PROPN
cet-386	68	9	pp	pp	PROPN
cet-386	68	10	/	/	SYM
cet-386	68	11	cds	cd	NOUN
cet-386	68	12	.	.	PUNCT
cet-386	69	1	from	from	ADP
cet-386	69	2	the	the	DET
cet-386	69	3	eds	ed	NOUN
cet-386	69	4	spectrum	spectrum	NOUN
cet-386	69	5	it	it	PRON
cet-386	69	6	can	can	AUX
cet-386	69	7	be	be	AUX
cet-386	69	8	seen	see	VERB
cet-386	69	9	that	that	SCONJ
cet-386	69	10	the	the	DET
cet-386	69	11	composite	composite	ADJ
cet-386	69	12	contain	contain	VERB
cet-386	69	13	cd	cd	NOUN
cet-386	69	14	and	and	CCONJ
cet-386	69	15	s	s	PRON
cet-386	69	16	as	as	ADP
cet-386	69	17	the	the	DET
cet-386	69	18	main	main	ADJ
cet-386	69	19	inorganic	inorganic	ADJ
cet-386	69	20	elements	element	NOUN
cet-386	69	21	,	,	PUNCT
cet-386	69	22	the	the	DET
cet-386	69	23	week	week	NOUN
cet-386	69	24	signal	signal	NOUN
cet-386	69	25	of	of	ADP
cet-386	69	26	ni	ni	PROPN
cet-386	69	27	is	be	AUX
cet-386	69	28	coming	come	VERB
cet-386	69	29	from	from	ADP
cet-386	69	30	substrate	substrate	NOUN
cet-386	69	31	.	.	PUNCT
cet-386	70	1	figure	figure	NOUN
cet-386	70	2	4	4	NUM
cet-386	70	3	.	.	PUNCT
cet-386	70	4	sem	sem	NOUN
cet-386	70	5	images	image	NOUN
cet-386	70	6	of	of	ADP
cet-386	70	7	pp	pp	ADP
cet-386	70	8	/	/	SYM
cet-386	70	9	cds	cd	NOUN
cet-386	70	10	nanocomposites	nanocomposite	NOUN
cet-386	70	11	figure	figure	VERB
cet-386	70	12	5	5	NUM
cet-386	70	13	.	.	PUNCT
cet-386	71	1	eds	ed	NOUN
cet-386	71	2	spectra	spectra	NOUN
cet-386	71	3	of	of	ADP
cet-386	71	4	pp	pp	PROPN
cet-386	71	5	/	/	SYM
cet-386	71	6	cds	cd	NOUN
cet-386	71	7	nanocomposite	nanocomposite	PROPN
cet-386	71	8	64	64	NUM
cet-386	71	9	the	the	DET
cet-386	71	10	figures	figure	NOUN
cet-386	71	11	6	6	NUM
cet-386	71	12	and	and	CCONJ
cet-386	71	13	7	7	NUM
cet-386	71	14	report	report	NOUN
cet-386	71	15	the	the	DET
cet-386	71	16	sem	sem	NOUN
cet-386	71	17	and	and	CCONJ
cet-386	71	18	eds	ed	NOUN
cet-386	71	19	spectra	spectra	NOUN
cet-386	71	20	of	of	ADP
cet-386	71	21	hybrid	hybrid	ADJ
cet-386	71	22	nanocomposite	nanocomposite	PROPN
cet-386	71	23	pp+pbs	pp+pbs	PROPN
cet-386	71	24	/	/	SYM
cet-386	71	25	cds	cd	NOUN
cet-386	71	26	,	,	PUNCT
cet-386	71	27	respectively	respectively	ADV
cet-386	71	28	.	.	PUNCT
cet-386	72	1	as	as	SCONJ
cet-386	72	2	it	it	PRON
cet-386	72	3	can	can	AUX
cet-386	72	4	be	be	AUX
cet-386	72	5	seen	see	VERB
cet-386	72	6	from	from	ADP
cet-386	72	7	the	the	DET
cet-386	72	8	figure	figure	NOUN
cet-386	72	9	6	6	NUM
cet-386	72	10	the	the	DET
cet-386	72	11	average	average	ADJ
cet-386	72	12	size	size	NOUN
cet-386	72	13	of	of	ADP
cet-386	72	14	nanoparticles	nanoparticle	NOUN
cet-386	72	15	is	be	AUX
cet-386	72	16	in	in	ADP
cet-386	72	17	the	the	DET
cet-386	72	18	raneg	raneg	NOUN
cet-386	72	19	9	9	NUM
cet-386	72	20	-	-	SYM
cet-386	72	21	12	12	NUM
cet-386	72	22	nm	nm	NOUN
cet-386	72	23	.	.	PUNCT
cet-386	73	1	the	the	DET
cet-386	73	2	eds	ed	NOUN
cet-386	73	3	spectra	spectra	PROPN
cet-386	73	4	shows	show	VERB
cet-386	73	5	that	that	SCONJ
cet-386	73	6	the	the	DET
cet-386	73	7	main	main	ADJ
cet-386	73	8	elements	element	NOUN
cet-386	73	9	of	of	ADP
cet-386	73	10	hybrid	hybrid	ADJ
cet-386	73	11	nanocomposite	nanocomposite	NOUN
cet-386	73	12	,	,	PUNCT
cet-386	73	13	apart	apart	ADV
cet-386	73	14	carbon	carbon	NOUN
cet-386	73	15	,	,	PUNCT
cet-386	73	16	are	be	AUX
cet-386	73	17	pb	pb	ADP
cet-386	73	18	,	,	PUNCT
cet-386	73	19	cd	cd	PROPN
cet-386	73	20	and	and	CCONJ
cet-386	73	21	s	s	PROPN
cet-386	73	22	,	,	PUNCT
cet-386	73	23	thus	thus	ADV
cet-386	73	24	the	the	DET
cet-386	73	25	nanocomposites	nanocomposite	NOUN
cet-386	73	26	consists	consist	VERB
cet-386	73	27	of	of	ADP
cet-386	73	28	cds	cd	NOUN
cet-386	73	29	and	and	CCONJ
cet-386	73	30	pbs	pbs	PROPN
cet-386	73	31	nanophases	nanophase	NOUN
cet-386	73	32	.	.	PUNCT
cet-386	74	1	figure	figure	VERB
cet-386	74	2	6	6	NUM
cet-386	74	3	.	.	PUNCT
cet-386	75	1	sem	sem	ADJ
cet-386	75	2	images	image	NOUN
cet-386	75	3	of	of	ADP
cet-386	75	4	pp+pbs	pp+pb	NOUN
cet-386	75	5	/	/	SYM
cet-386	75	6	cds	cd	NOUN
cet-386	75	7	nanocomposites	nanocomposite	NOUN
cet-386	75	8	.	.	PUNCT
cet-386	76	1	figure	figure	NOUN
cet-386	76	2	7	7	NUM
cet-386	76	3	.	.	PUNCT
cet-386	77	1	eds	ed	NOUN
cet-386	77	2	spectra	spectra	PROPN
cet-386	77	3	ofpp+pbs	ofpp+pbs	PROPN
cet-386	77	4	/	/	SYM
cet-386	77	5	cds	cds	PROPN
cet-386	77	6	nanocomposite	nanocomposite	PROPN
cet-386	77	7	finally	finally	ADV
cet-386	77	8	,	,	PUNCT
cet-386	77	9	the	the	DET
cet-386	77	10	photoluminescence	photoluminescence	NOUN
cet-386	77	11	properties	property	NOUN
cet-386	77	12	of	of	ADP
cet-386	77	13	the	the	DET
cet-386	77	14	obtained	obtain	VERB
cet-386	77	15	polymer	polymer	NOUN
cet-386	77	16	nanocomposites	nanocomposite	NOUN
cet-386	77	17	were	be	AUX
cet-386	77	18	studied	study	VERB
cet-386	77	19	.	.	PUNCT
cet-386	78	1	figure	figure	NOUN
cet-386	78	2	8	8	NUM
cet-386	78	3	shows	show	VERB
cet-386	78	4	the	the	DET
cet-386	78	5	luminescent	luminescent	ADJ
cet-386	78	6	spectra	spectra	NOUN
cet-386	78	7	of	of	ADP
cet-386	78	8	the	the	DET
cet-386	78	9	nanocomposites	nanocomposite	NOUN
cet-386	78	10	pp	pp	ADP
cet-386	78	11	/	/	SYM
cet-386	78	12	cds	cd	NOUN
cet-386	78	13	and	and	CCONJ
cet-386	78	14	pp+pbs	pp+pb	NOUN
cet-386	78	15	/	/	SYM
cet-386	78	16	cds	cd	NOUN
cet-386	78	17	.	.	PUNCT
cet-386	79	1	the	the	DET
cet-386	79	2	photoluminescence	photoluminescence	NOUN
cet-386	79	3	spectrum	spectrum	NOUN
cet-386	79	4	of	of	ADP
cet-386	79	5	pp	pp	ADP
cet-386	79	6	/	/	SYM
cet-386	79	7	cds	cd	NOUN
cet-386	79	8	nanocomposites	nanocomposite	NOUN
cet-386	79	9	was	be	AUX
cet-386	79	10	measured	measure	VERB
cet-386	79	11	in	in	ADP
cet-386	79	12	the	the	DET
cet-386	79	13	wavelength	wavelength	NOUN
cet-386	79	14	range	range	NOUN
cet-386	79	15	300	300	NUM
cet-386	79	16	-	-	SYM
cet-386	79	17	700	700	NUM
cet-386	79	18	nm	nm	NOUN
cet-386	79	19	with	with	ADP
cet-386	79	20	excitation	excitation	NOUN
cet-386	79	21	at	at	ADP
cet-386	79	22	342	342	NUM
cet-386	79	23	nm	nm	ADJ
cet-386	79	24	wavelength	wavelength	NOUN
cet-386	79	25	.	.	PUNCT
cet-386	80	1	the	the	DET
cet-386	80	2	photoluminescence	photoluminescence	NOUN
cet-386	80	3	spectra	spectra	NOUN
cet-386	80	4	of	of	ADP
cet-386	80	5	pp+pbs	pp+pb	NOUN
cet-386	80	6	/	/	SYM
cet-386	80	7	cds	cd	NOUN
cet-386	80	8	nanocomposites	nanocomposite	NOUN
cet-386	80	9	were	be	AUX
cet-386	80	10	studied	study	VERB
cet-386	80	11	in	in	ADP
cet-386	80	12	the	the	DET
cet-386	80	13	wavelength	wavelength	NOUN
cet-386	80	14	range	range	NOUN
cet-386	80	15	300	300	NUM
cet-386	80	16	-	-	SYM
cet-386	80	17	900	900	NUM
cet-386	80	18	nm	nm	NOUN
cet-386	80	19	with	with	ADP
cet-386	80	20	excitation	excitation	NOUN
cet-386	80	21	at	at	ADP
cet-386	80	22	330	330	NUM
cet-386	80	23	nm	nm	ADJ
cet-386	80	24	wavelength	wavelength	NOUN
cet-386	80	25	.	.	PUNCT
cet-386	81	1	as	as	SCONJ
cet-386	81	2	can	can	AUX
cet-386	81	3	be	be	AUX
cet-386	81	4	seen	see	VERB
cet-386	81	5	from	from	ADP
cet-386	81	6	fig	fig	NOUN
cet-386	81	7	.	.	PUNCT
cet-386	82	1	8	8	NUM
cet-386	82	2	(	(	PUNCT
cet-386	82	3	a	a	NOUN
cet-386	82	4	)	)	PUNCT
cet-386	82	5	,	,	PUNCT
cet-386	82	6	peaks	peak	NOUN
cet-386	82	7	at	at	ADP
cet-386	82	8	511	511	NUM
cet-386	82	9	nm	nm	NOUN
cet-386	82	10	and	and	CCONJ
cet-386	82	11	560	560	NUM
cet-386	82	12	nm	nm	ADJ
cet-386	82	13	wavelengths	wavelength	NOUN
cet-386	82	14	belong	belong	VERB
cet-386	82	15	to	to	ADP
cet-386	82	16	cds	cd	NOUN
cet-386	82	17	nanoparticles	nanoparticle	NOUN
cet-386	82	18	.	.	PUNCT
cet-386	83	1	from	from	ADP
cet-386	83	2	the	the	DET
cet-386	83	3	literature	literature	NOUN
cet-386	83	4	data	datum	NOUN
cet-386	83	5	it	it	PRON
cet-386	83	6	is	be	AUX
cet-386	83	7	known	know	VERB
cet-386	83	8	that	that	SCONJ
cet-386	83	9	the	the	DET
cet-386	83	10	luminescence	luminescence	NOUN
cet-386	83	11	region	region	NOUN
cet-386	83	12	for	for	ADP
cet-386	83	13	pbs	pbs	PROPN
cet-386	83	14	nanoparticles	nanoparticle	NOUN
cet-386	83	15	falls	fall	VERB
cet-386	83	16	into	into	ADP
cet-386	83	17	the	the	DET
cet-386	83	18	infrared	infrared	ADJ
cet-386	83	19	region	region	NOUN
cet-386	83	20	of	of	ADP
cet-386	83	21	the	the	DET
cet-386	83	22	spectrum	spectrum	NOUN
cet-386	83	23	(	(	PUNCT
cet-386	83	24	ludmilabakueva	ludmilabakueva	PROPN
cet-386	83	25	,	,	PUNCT
cet-386	83	26	et.al	et.al	PROPN
cet-386	83	27	,	,	PUNCT
cet-386	83	28	2004	2004	NUM
cet-386	83	29	)	)	PUNCT
cet-386	83	30	.	.	PUNCT
cet-386	84	1	figure	figure	VERB
cet-386	84	2	8	8	NUM
cet-386	84	3	(	(	PUNCT
cet-386	84	4	b	b	NOUN
cet-386	84	5	)	)	PUNCT
cet-386	84	6	shows	show	VERB
cet-386	84	7	the	the	DET
cet-386	84	8	luminescence	luminescence	NOUN
cet-386	84	9	spectrum	spectrum	NOUN
cet-386	84	10	of	of	ADP
cet-386	84	11	a	a	DET
cet-386	84	12	hybrid	hybrid	ADJ
cet-386	84	13	nanocomposite	nanocomposite	NOUN
cet-386	84	14	based	base	VERB
cet-386	84	15	on	on	ADP
cet-386	84	16	pp+pbs	pp+pb	NOUN
cet-386	84	17	/	/	SYM
cet-386	84	18	cds	cd	NOUN
cet-386	84	19	.	.	PUNCT
cet-386	85	1	as	as	SCONJ
cet-386	85	2	can	can	AUX
cet-386	85	3	be	be	AUX
cet-386	85	4	seen	see	VERB
cet-386	85	5	from	from	ADP
cet-386	85	6	the	the	DET
cet-386	85	7	figure	figure	NOUN
cet-386	85	8	,	,	PUNCT
cet-386	85	9	luminescent	luminescent	NOUN
cet-386	85	10	peaks	peak	NOUN
cet-386	85	11	are	be	AUX
cet-386	85	12	observed	observe	VERB
cet-386	85	13	at	at	ADP
cet-386	85	14	wavelengths	wavelength	NOUN
cet-386	85	15	of	of	ADP
cet-386	85	16	680	680	NUM
cet-386	85	17	nm	nm	NOUN
cet-386	85	18	and	and	CCONJ
cet-386	85	19	715	715	NUM
cet-386	85	20	nm	nm	NOUN
cet-386	85	21	.	.	PUNCT
cet-386	86	1	from	from	ADP
cet-386	86	2	the	the	DET
cet-386	86	3	luminescence	luminescence	NOUN
cet-386	86	4	spectrum	spectrum	NOUN
cet-386	86	5	of	of	ADP
cet-386	86	6	the	the	DET
cet-386	86	7	hybrid	hybrid	ADJ
cet-386	86	8	nanocomposite	nanocomposite	PROPN
cet-386	86	9	pp+pbs	pp+pbs	PROPN
cet-386	86	10	/	/	SYM
cet-386	86	11	cds	cd	NOUN
cet-386	86	12	,	,	PUNCT
cet-386	86	13	it	it	PRON
cet-386	86	14	can	can	AUX
cet-386	86	15	be	be	AUX
cet-386	86	16	seen	see	VERB
cet-386	86	17	that	that	SCONJ
cet-386	86	18	the	the	DET
cet-386	86	19	spectral	spectral	ADJ
cet-386	86	20	-	-	PUNCT
cet-386	86	21	sensitive	sensitive	ADJ
cet-386	86	22	region	region	NOUN
cet-386	86	23	broadens	broaden	VERB
cet-386	86	24	.	.	PUNCT
cet-386	87	1	65	65	NUM
cet-386	87	2	figure	figure	NOUN
cet-386	87	3	8	8	NUM
cet-386	87	4	.	.	PUNCT
cet-386	88	1	photoluminescence	photoluminescence	NOUN
cet-386	88	2	spectrum	spectrum	NOUN
cet-386	88	3	of	of	ADP
cet-386	88	4	pp	pp	ADP
cet-386	88	5	/	/	SYM
cet-386	88	6	cds	cd	NOUN
cet-386	88	7	(	(	PUNCT
cet-386	88	8	a	a	NOUN
cet-386	88	9	)	)	PUNCT
cet-386	88	10	and	and	CCONJ
cet-386	88	11	pp+pbs	pp+pb	NOUN
cet-386	88	12	/	/	SYM
cet-386	88	13	cds	cd	NOUN
cet-386	88	14	(	(	PUNCT
cet-386	88	15	b	b	NOUN
cet-386	88	16	)	)	PUNCT
cet-386	88	17	nanocomposites	nanocomposite	VERB
cet-386	88	18	4	4	NUM
cet-386	88	19	.	.	PUNCT
cet-386	89	1	conclusions	conclusion	NOUN
cet-386	89	2	in	in	ADP
cet-386	89	3	this	this	DET
cet-386	89	4	paper	paper	NOUN
cet-386	89	5	,	,	PUNCT
cet-386	89	6	we	we	PRON
cet-386	89	7	have	have	VERB
cet-386	89	8	reporteda	reporteda	NOUN
cet-386	89	9	study	study	NOUN
cet-386	89	10	on	on	ADP
cet-386	89	11	the	the	DET
cet-386	89	12	synthesis	synthesis	NOUN
cet-386	89	13	of	of	ADP
cet-386	89	14	hybrid	hybrid	ADJ
cet-386	89	15	polymer	polymer	NOUN
cet-386	89	16	nanocomposites	nanocomposite	NOUN
cet-386	89	17	pp+pbs	pp+pb	NOUN
cet-386	89	18	/	/	SYM
cet-386	89	19	cds	cd	NOUN
cet-386	89	20	,	,	PUNCT
cet-386	89	21	their	their	PRON
cet-386	89	22	structure	structure	NOUN
cet-386	89	23	characterization	characterization	NOUN
cet-386	89	24	and	and	CCONJ
cet-386	89	25	their	their	PRON
cet-386	89	26	optical	optical	ADJ
cet-386	89	27	properties	property	NOUN
cet-386	89	28	.	.	PUNCT
cet-386	90	1	the	the	DET
cet-386	90	2	structure	structure	NOUN
cet-386	90	3	and	and	CCONJ
cet-386	90	4	the	the	DET
cet-386	90	5	size	size	NOUN
cet-386	90	6	distribution	distribution	NOUN
cet-386	90	7	of	of	ADP
cet-386	90	8	nanoparticles	nanoparticle	NOUN
cet-386	90	9	in	in	ADP
cet-386	90	10	the	the	DET
cet-386	90	11	polymer	polymer	NOUN
cet-386	90	12	matrix	matrix	NOUN
cet-386	90	13	were	be	AUX
cet-386	90	14	studied	study	VERB
cet-386	90	15	by	by	ADP
cet-386	90	16	using	use	VERB
cet-386	90	17	sem	sem	NOUN
cet-386	90	18	analyses	analysis	NOUN
cet-386	90	19	.	.	PUNCT
cet-386	91	1	it	it	PRON
cet-386	91	2	was	be	AUX
cet-386	91	3	found	find	VERB
cet-386	91	4	that	that	SCONJ
cet-386	91	5	the	the	DET
cet-386	91	6	average	average	ADJ
cet-386	91	7	nanoparticle	nanoparticle	NOUN
cet-386	91	8	size	size	NOUN
cet-386	91	9	of	of	ADP
cet-386	91	10	the	the	DET
cet-386	91	11	hybrid	hybrid	ADJ
cet-386	91	12	nanocomposite	nanocomposite	PROPN
cet-386	91	13	pp+pbs	pp+pbs	PROPN
cet-386	91	14	/	/	SYM
cet-386	91	15	cds	cds	PROPN
cet-386	91	16	is	be	AUX
cet-386	91	17	in	in	ADP
cet-386	91	18	the	the	DET
cet-386	91	19	range	range	NOUN
cet-386	91	20	9	9	NUM
cet-386	91	21	-	-	SYM
cet-386	91	22	12	12	NUM
cet-386	91	23	nm	nm	NOUN
cet-386	91	24	.	.	PUNCT
cet-386	92	1	optical	optical	ADJ
cet-386	92	2	and	and	CCONJ
cet-386	92	3	photoluminescence	photoluminescence	NOUN
cet-386	92	4	properties	property	NOUN
cet-386	92	5	of	of	ADP
cet-386	92	6	nanocomposites	nanocomposite	NOUN
cet-386	92	7	were	be	AUX
cet-386	92	8	also	also	ADV
cet-386	92	9	studied	study	VERB
cet-386	92	10	.	.	PUNCT
cet-386	93	1	from	from	ADP
cet-386	93	2	uv	uv	PROPN
cet-386	93	3	spectra	spectra	NOUN
cet-386	93	4	of	of	ADP
cet-386	93	5	nanocomposites	nanocomposite	NOUN
cet-386	93	6	by	by	ADP
cet-386	93	7	extrapolation	extrapolation	NOUN
cet-386	93	8	method	method	NOUN
cet-386	93	9	was	be	AUX
cet-386	93	10	calculated	calculate	VERB
cet-386	93	11	the	the	DET
cet-386	93	12	width	width	NOUN
cet-386	93	13	of	of	ADP
cet-386	93	14	the	the	DET
cet-386	93	15	forbidden	forbid	VERB
cet-386	93	16	band	band	NOUN
cet-386	93	17	of	of	ADP
cet-386	93	18	polymer	polymer	NOUN
cet-386	93	19	nanocomposites	nanocomposite	NOUN
cet-386	93	20	.	.	PUNCT
cet-386	94	1	it	it	PRON
cet-386	94	2	was	be	AUX
cet-386	94	3	found	find	VERB
cet-386	94	4	that	that	SCONJ
cet-386	94	5	for	for	ADP
cet-386	94	6	pp	pp	ADP
cet-386	94	7	/	/	SYM
cet-386	94	8	pbs	pbs	PROPN
cet-386	94	9	nanocomposites	nanocomposite	NOUN
cet-386	94	10	,	,	PUNCT
cet-386	94	11	the	the	DET
cet-386	94	12	band	band	NOUN
cet-386	94	13	gap	gap	NOUN
cet-386	94	14	is	be	AUX
cet-386	94	15	1.65	1.65	NUM
cet-386	94	16	ev	ev	NOUN
cet-386	94	17	,	,	PUNCT
cet-386	94	18	for	for	ADP
cet-386	94	19	pp	pp	ADP
cet-386	94	20	/	/	SYM
cet-386	94	21	cds	cd	NOUN
cet-386	94	22	2.6	2.6	NUM
cet-386	94	23	ev	ev	NOUN
cet-386	94	24	,	,	PUNCT
cet-386	94	25	whereas	whereas	SCONJ
cet-386	94	26	for	for	ADP
cet-386	94	27	pp+pbs	pp+pb	NOUN
cet-386	94	28	/	/	SYM
cet-386	94	29	cds	cd	NOUN
cet-386	94	30	nanocomposite	nanocomposite	NOUN
cet-386	94	31	is	be	AUX
cet-386	94	32	3.0	3.0	NUM
cet-386	94	33	ev	ev	NOUN
cet-386	94	34	.	.	PROPN
cet-386	94	35	photoluminescence	photoluminescence	NOUN
cet-386	94	36	analysis	analysis	NOUN
cet-386	94	37	of	of	ADP
cet-386	94	38	nanocomposites	nanocomposite	NOUN
cet-386	94	39	pp+pbs	pp+pb	NOUN
cet-386	94	40	/	/	SYM
cet-386	94	41	cds	cd	NOUN
cet-386	94	42	shows	show	VERB
cet-386	94	43	2	2	NUM
cet-386	94	44	luminescent	luminescent	NOUN
cet-386	94	45	peaks	peak	NOUN
cet-386	94	46	at	at	ADP
cet-386	94	47	the	the	DET
cet-386	94	48	wavelength	wavelength	NOUN
cet-386	94	49	of	of	ADP
cet-386	94	50	680	680	NUM
cet-386	94	51	nm	nm	NOUN
cet-386	94	52	and	and	CCONJ
cet-386	94	53	715	715	NUM
cet-386	94	54	nm	nm	NOUN
cet-386	94	55	,	,	PUNCT
cet-386	94	56	respectively	respectively	ADV
cet-386	94	57	,	,	PUNCT
cet-386	94	58	ofthe	ofthe	ADJ
cet-386	94	59	luminescence	luminescence	NOUN
cet-386	94	60	spectra	spectra	NOUN
cet-386	94	61	.	.	PUNCT
cet-386	95	1	therefore	therefore	ADV
cet-386	95	2	,	,	PUNCT
cet-386	95	3	for	for	ADP
cet-386	95	4	such	such	ADJ
cet-386	95	5	systems	system	NOUN
cet-386	95	6	,	,	PUNCT
cet-386	95	7	the	the	DET
cet-386	95	8	spectral	spectral	ADJ
cet-386	95	9	sensitive	sensitive	ADJ
cet-386	95	10	region	region	NOUN
cet-386	95	11	is	be	AUX
cet-386	95	12	broadenand	broadenand	NOUN
cet-386	95	13	it	it	PRON
cet-386	95	14	allows	allow	VERB
cet-386	95	15	to	to	PART
cet-386	95	16	use	use	VERB
cet-386	95	17	such	such	ADJ
cet-386	95	18	nanocomposites	nanocomposite	NOUN
cet-386	95	19	for	for	ADP
cet-386	95	20	creation	creation	NOUN
cet-386	95	21	of	of	ADP
cet-386	95	22	luminescent	luminescent	NOUN
cet-386	95	23	screens	screen	NOUN
cet-386	95	24	.	.	PUNCT
cet-386	96	1	references	reference	NOUN
cet-386	96	2	a.m.maharramov	a.m.maharramov	ADJ
cet-386	96	3	,	,	PUNCT
cet-386	96	4	m.a.ramazanov	m.a.ramazanov	NOUN
cet-386	96	5	,	,	PUNCT
cet-386	96	6	f.v.hajiyeva	f.v.hajiyeva	NOUN
cet-386	96	7	,	,	PUNCT
cet-386	96	8	s.s.amirov,2016	s.s.amirov,2016	PROPN
cet-386	96	9	,	,	PUNCT
cet-386	96	10	investigation	investigation	VERB
cet-386	96	11	the	the	DET
cet-386	96	12	structure	structure	NOUN
cet-386	96	13	and	and	CCONJ
cet-386	96	14	dielectric	dielectric	ADJ
cet-386	96	15	properties	property	NOUN
cet-386	96	16	of	of	ADP
cet-386	96	17	pp+pbs	pp+pb	NOUN
cet-386	96	18	nanocomposites	nanocomposite	NOUN
cet-386	96	19	synthesized	synthesize	VERB
cet-386	96	20	on	on	ADP
cet-386	96	21	the	the	DET
cet-386	96	22	basis	basis	NOUN
cet-386	96	23	of	of	ADP
cet-386	96	24	polypropylene	polypropylene	NOUN
cet-386	96	25	polymer	polymer	NOUN
cet-386	96	26	irradiated	irradiate	VERB
cet-386	96	27	by	by	ADP
cet-386	96	28	accelerated	accelerate	VERB
cet-386	96	29	heavy	heavy	ADJ
cet-386	96	30	ions	ion	NOUN
cet-386	96	31	,	,	PUNCT
cet-386	96	32	optoelectronics	optoelectronic	NOUN
cet-386	96	33	and	and	CCONJ
cet-386	96	34	biomedical	biomedical	ADJ
cet-386	96	35	materials	material	NOUN
cet-386	96	36	,	,	PUNCT
cet-386	96	37	8	8	NUM
cet-386	96	38	(	(	PUNCT
cet-386	96	39	1	1	NUM
cet-386	96	40	)	)	PUNCT
cet-386	96	41	,	,	PUNCT
cet-386	96	42	15	15	NUM
cet-386	96	43	-	-	SYM
cet-386	96	44	20	20	NUM
cet-386	96	45	a.m.maharramov	a.m.maharramov	ADJ
cet-386	96	46	,	,	PUNCT
cet-386	96	47	m.a.ramazanov	m.a.ramazanov	NOUN
cet-386	96	48	,	,	PUNCT
cet-386	96	49	f.v.hajiyeva	f.v.hajiyeva	ADJ
cet-386	96	50	,	,	PUNCT
cet-386	96	51	2016,a	2016,a	NUM
cet-386	96	52	structure	structure	NOUN
cet-386	96	53	and	and	CCONJ
cet-386	96	54	dielectric	dielectric	ADJ
cet-386	96	55	properties	property	NOUN
cet-386	96	56	of	of	ADP
cet-386	96	57	polymer	polymer	NOUN
cet-386	96	58	nanocomposites	nanocomposite	NOUN
cet-386	96	59	on	on	ADP
cet-386	96	60	the	the	DET
cet-386	96	61	base	base	NOUN
cet-386	96	62	of	of	ADP
cet-386	96	63	isotactic	isotactic	ADJ
cet-386	96	64	polypropylene	polypropylene	NOUN
cet-386	96	65	and	and	CCONJ
cet-386	96	66	lead	lead	VERB
cet-386	96	67	sulphide	sulphide	NOUN
cet-386	96	68	nanoparticles	nanoparticle	NOUN
cet-386	96	69	,	,	PUNCT
cet-386	96	70	chalcogenide	chalcogenide	NOUN
cet-386	96	71	letters	letter	NOUN
cet-386	96	72	,	,	PUNCT
cet-386	96	73	13(1	13(1	NUM
cet-386	96	74	)	)	PUNCT
cet-386	96	75	,	,	PUNCT
cet-386	96	76	35	35	NUM
cet-386	96	77	-	-	SYM
cet-386	96	78	40	40	NUM
cet-386	96	79	ludmilabakueva	ludmilabakueva	ADJ
cet-386	96	80	,	,	PUNCT
cet-386	96	81	ivan	ivan	PROPN
cet-386	96	82	gorelikov	gorelikov	PROPN
cet-386	96	83	,	,	PUNCT
cet-386	96	84	sergei	sergei	PROPN
cet-386	96	85	musikhin	musikhin	PROPN
cet-386	96	86	,	,	PUNCT
cet-386	96	87	xu	xu	PROPN
cet-386	96	88	sheng	sheng	PROPN
cet-386	96	89	zhao	zhao	PROPN
cet-386	96	90	,	,	PUNCT
cet-386	96	91	edward	edward	PROPN
cet-386	96	92	h.sargent	h.sargent	PROPN
cet-386	96	93	and	and	CCONJ
cet-386	96	94	eugenia	eugenia	PROPN
cet-386	96	95	kumacheva	kumacheva	PROPN
cet-386	96	96	2004	2004	NUM
cet-386	96	97	,	,	PUNCT
cet-386	96	98	pbs	pbs	PROPN
cet-386	96	99	quantum	quantum	PROPN
cet-386	96	100	dots	dot	NOUN
cet-386	96	101	with	with	ADP
cet-386	96	102	stable	stable	ADJ
cet-386	96	103	efficient	efficient	ADJ
cet-386	96	104	luminescence	luminescence	NOUN
cet-386	96	105	in	in	ADP
cet-386	96	106	the	the	DET
cet-386	96	107	near	near	ADJ
cet-386	96	108	-	-	PUNCT
cet-386	96	109	ir	ir	NOUN
cet-386	96	110	spectral	spectral	PROPN
cet-386	96	111	range	range	NOUN
cet-386	96	112	adv	adv	PROPN
cet-386	96	113	.	.	PUNCT
cet-386	96	114	materials	material	NOUN
cet-386	96	115	16(11	16(11	NUM
cet-386	96	116	)	)	PUNCT
cet-386	96	117	,	,	PUNCT
cet-386	96	118	926	926	NUM
cet-386	96	119	-	-	SYM
cet-386	96	120	929	929	NUM
cet-386	96	121	singhv	singhv	NOUN
cet-386	96	122	.	.	PUNCT
cet-386	97	1	,sharmap.k	,sharmap.k	PROPN
cet-386	97	2	.	.	PUNCT
cet-386	97	3	,	,	PUNCT
cet-386	98	1	chouhanp	chouhanp	PROPN
cet-386	98	2	.	.	PUNCT
cet-386	98	3	,	,	PUNCT
cet-386	98	4	2010.surfactant	2010.surfactant	ADJ
cet-386	98	5	mediated	mediate	VERB
cet-386	98	6	phase	phase	NOUN
cet-386	98	7	transformation	transformation	NOUN
cet-386	98	8	of	of	ADP
cet-386	98	9	cds	cd	NOUN
cet-386	98	10	nanoparticles	nanoparticle	NOUN
cet-386	98	11	.	.	PUNCT
cet-386	99	1	mater	mater	NOUN
cet-386	99	2	.	.	PUNCT
cet-386	99	3	chem	chem	PROPN
cet-386	99	4	.	.	PUNCT
cet-386	100	1	phys	phy	NOUN
cet-386	100	2	.	.	PUNCT
cet-386	100	3	,	,	PUNCT
cet-386	100	4	121	121	NUM
cet-386	100	5	,	,	PUNCT
cet-386	100	6	202	202	NUM
cet-386	100	7	-	-	SYM
cet-386	100	8	207	207	NUM
cet-386	100	9	.	.	PUNCT
cet-386	101	1	t.serrano	t.serrano	PROPN
cet-386	101	2	,	,	PUNCT
cet-386	101	3	j.l.cavazos	j.l.cavazos	PROPN
cet-386	101	4	,	,	PUNCT
cet-386	101	5	y.	y.	PROPN
cet-386	101	6	pena	pena	PROPN
cet-386	101	7	,	,	PUNCT
cet-386	101	8	i.	i.	NOUN
cet-386	101	9	,gomez	,gomez	PUNCT
cet-386	101	10	2014,synthesis	2014,synthesis	PROPN
cet-386	101	11	and	and	CCONJ
cet-386	101	12	characterization	characterization	NOUN
cet-386	101	13	of	of	ADP
cet-386	101	14	pbs	pbs	PROPN
cet-386	101	15	/	/	SYM
cet-386	101	16	znscore	znscore	PROPN
cet-386	101	17	/	/	SYM
cet-386	101	18	shell	shell	ADJ
cet-386	101	19	nanoparticles	nanoparticle	NOUN
cet-386	101	20	by	by	ADP
cet-386	101	21	microwave	microwave	NOUN
cet-386	101	22	method	method	NOUN
cet-386	101	23	,	,	PUNCT
cet-386	101	24	chalcogenide	chalcogenide	NOUN
cet-386	101	25	letters	letter	NOUN
cet-386	101	26	11(1	11(1	NUM
cet-386	101	27	)	)	PUNCT
cet-386	101	28	,	,	PUNCT
cet-386	101	29	p.	p.	NOUN
cet-386	101	30	21–28	21–28	NUM
cet-386	101	31	thambidurai	thambidurai	NOUN
cet-386	101	32	m.	m.	NOUN
cet-386	101	33	,	,	PUNCT
cet-386	101	34	muthukumarasmy	muthukumarasmy	PROPN
cet-386	101	35	n.	n.	PROPN
cet-386	101	36	,	,	PUNCT
cet-386	101	37	murugan	murugan	PROPN
cet-386	101	38	n.	n.	PROPN
cet-386	101	39	,	,	PUNCT
cet-386	101	40	dhayalan	dhayalan	PROPN
cet-386	101	41	s.v.a	s.v.a	PROPN
cet-386	101	42	.	.	PUNCT
cet-386	101	43	,	,	PUNCT
cet-386	101	44	balasundarabhu	balasundarabhu	PROPN
cet-386	101	45	r.	r.	PROPN
cet-386	101	46	,	,	PUNCT
cet-386	101	47	2011	2011	NUM
cet-386	101	48	.	.	PUNCT
cet-386	102	1	structural	structural	ADJ
cet-386	102	2	and	and	CCONJ
cet-386	102	3	optical	optical	ADJ
cet-386	102	4	characterization	characterization	NOUN
cet-386	102	5	of	of	ADP
cet-386	102	6	nidoped	nidope	VERB
cet-386	102	7	cds	cd	NOUN
cet-386	102	8	quantum	quantum	PROPN
cet-386	102	9	.	.	PUNCT
cet-386	103	1	j.	j.	PROPN
cet-386	103	2	mater	mater	PROPN
cet-386	103	3	.	.	PUNCT
cet-386	104	1	sci	sci	PROPN
cet-386	104	2	.	.	PROPN
cet-386	104	3	,	,	PUNCT
cet-386	104	4	46	46	NUM
cet-386	104	5	,	,	PUNCT
cet-386	104	6	3200	3200	NUM
cet-386	104	7	-	-	SYM
cet-386	104	8	3206	3206	NUM
cet-386	104	9	.	.	PUNCT
cet-386	105	1	yashar	yashar	PROPN
cet-386	105	2	azizian	azizian	PROPN
cet-386	105	3	kalandaragh	kalandaragh	PROPN
cet-386	105	4	,	,	PUNCT
cet-386	105	5	m.b	m.b	PROPN
cet-386	105	6	.	.	PROPN
cet-386	105	7	muradov	muradov	PROPN
cet-386	105	8	,	,	PUNCT
cet-386	105	9	r.k	r.k	PROPN
cet-386	105	10	.	.	PROPN
cet-386	105	11	mammedov	mammedov	PROPN
cet-386	105	12	,	,	PUNCT
cet-386	105	13	ali	ali	PROPN
cet-386	105	14	khodayari	khodayari	PROPN
cet-386	105	15	2007	2007	NUM
cet-386	105	16	growth	growth	NOUN
cet-386	105	17	process	process	NOUN
cet-386	105	18	and	and	CCONJ
cet-386	105	19	investigation	investigation	NOUN
cet-386	105	20	of	of	ADP
cet-386	105	21	some	some	DET
cet-386	105	22	physical	physical	ADJ
cet-386	105	23	properties	property	NOUN
cet-386	105	24	of	of	ADP
cet-386	105	25	cds	cd	NOUN
cet-386	105	26	nanocrystals	nanocrystal	NOUN
cet-386	105	27	formed	form	VERB
cet-386	105	28	in	in	ADP
cet-386	105	29	polymer	polymer	NOUN
cet-386	105	30	matrix	matrix	NOUN
cet-386	105	31	by	by	ADP
cet-386	105	32	successive	successive	ADJ
cet-386	105	33	ionic	ionic	ADJ
cet-386	105	34	layer	layer	NOUN
cet-386	105	35	adsorption	adsorption	NOUN
cet-386	105	36	and	and	CCONJ
cet-386	105	37	reaction	reaction	NOUN
cet-386	105	38	(	(	PUNCT
cet-386	105	39	silar	silar	NOUN
cet-386	105	40	)	)	PUNCT
cet-386	105	41	method	method	NOUN
cet-386	105	42	journal	journal	NOUN
cet-386	105	43	of	of	ADP
cet-386	105	44	crystal	crystal	NOUN
cet-386	105	45	growth	growth	NOUN
cet-386	105	46	305	305	NUM
cet-386	105	47	,	,	PUNCT
cet-386	105	48	175–180	175–180	PROPN
cet-386	105	49	z.i.ali	z.i.ali	PROPN
cet-386	105	50	,	,	PUNCT
cet-386	105	51	f.h	f.h	PROPN
cet-386	105	52	.	.	PROPN
cet-386	105	53	abd	abd	PROPN
cet-386	105	54	salam	salam	PROPN
cet-386	105	55	,	,	PUNCT
cet-386	105	56	h.h.saleh	h.h.saleh	NOUN
cet-386	105	57	,	,	PUNCT
cet-386	105	58	h.a.youssef	h.a.youssef	PROPN
cet-386	105	59	,	,	PUNCT
cet-386	105	60	r.sokary	r.sokary	ADJ
cet-386	105	61	,	,	PUNCT
cet-386	105	62	2015	2015	NUM
cet-386	105	63	,	,	PUNCT
cet-386	105	64	characterization	characterization	NOUN
cet-386	105	65	of	of	ADP
cet-386	105	66	semiconductor	semiconductor	NOUN
cet-386	105	67	cds	cd	NOUN
cet-386	105	68	/	/	SYM
cet-386	105	69	poly(vinyl	poly(vinyl	PROPN
cet-386	105	70	alcohol	alcohol	NOUN
cet-386	105	71	)	)	PUNCT
cet-386	105	72	nanocomposites	nanocomposite	NOUN
cet-386	105	73	using	use	VERB
cet-386	105	74	ultraviolet	ultraviolet	NOUN
cet-386	105	75	/	/	SYM
cet-386	105	76	visible	visible	ADJ
cet-386	105	77	spectrophotometry	spectrophotometry	NOUN
cet-386	105	78	,	,	PUNCT
cet-386	105	79	international	international	ADJ
cet-386	105	80	journal	journal	NOUN
cet-386	105	81	of	of	ADP
cet-386	105	82	chemical	chemical	PROPN
cet-386	105	83	,	,	PUNCT
cet-386	105	84	material	material	NOUN
cet-386	105	85	and	and	CCONJ
cet-386	105	86	environmental	environmental	ADJ
cet-386	105	87	research	research	NOUN
cet-386	105	88	,	,	PUNCT
cet-386	105	89	2	2	NUM
cet-386	105	90	(	(	PUNCT
cet-386	105	91	3	3	NUM
cet-386	105	92	)	)	PUNCT
cet-386	105	93	,	,	PUNCT
cet-386	105	94	17	17	NUM
cet-386	105	95	-	-	SYM
cet-386	105	96	29	29	NUM
cet-386	105	97	66	66	NUM
