id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
cet-394	Feng, Q.; Wang, L.; Su, L.; Xu, S.	Preparation of TiO2@SiO2 with a Hollow Olive-shaped Cable by Electrospinning 	2017	6	.pdf	application/pdf	2755	106	58	For example, DG Shin and others synthesized the MoS2/CNT coaxial nanotube by using hydrothermal method (Shin, et al., 2015); Hu and others combined the thermal precipitation and physical evaporation to synthesize three-layer coaxial nanocables (Ga/Ga2O3/ZnO) and the Ga2O3/ZnO two-layer coaxial nanotubes (Hu, et al., 2014); for the composite material of one- dimensional TiO2 /SiO2 nano-structured materials, Zhang and others prepared the coaxial TiO2/SiO2 nanotubes by using the sol-gel and gas method; Xu and others prepared the TiO2/SiO2 composite hollow nanofibres, TiO2@SiO2 submicron coaxial cables and TiO2@SiO2 coaxial double-wall submicron by using electrospinning technology (Xu, et al., 2012). Figure 1: Setup of the multilayer coaxial electrospinning 2.3 The preparation of the TiO2@SiO2 hollow olive-shaped cable The prepared [Sesame oil+Span-80+ Ti(OC4H9)4]@ [PVP+（C2H5O) 4Si] coaxial composite fibers are roasted through the programmed temperature control furnace, and the heating rate is 1℃/min.	cache/cet-394.pdf	txt/cet-394.txt
