id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
cet-13485		cet-13485		6	.pdf	application/pdf	2824	114	50	Since the aforementioned GDC layer fabrication process (Coppola et al. 2020; Coppola et al. 2018b) has proved feasible also in the case of industrial scale SOFC (Coppola et al. 2021, Coppola et al.2023), it is interesting and noteworthy to achieve a deeper understanding of microscopic differences among sputtered GDC thin film barrier layer as a function of post-growth annealing treatment in view of further optimization of industrial scale SOFCs. d National Research Council CNR-IOM, TASC National Laboratory, I-34149 Trieste, Italy e SolydEra S.p.A., Viale Trento 117, 38017 Mezzolombardo (TN), Italy f National Research Council CNR-SPIN, Area della Ricerca di Tor Vergata, 00133 Rome, Italy ncoppola@unisa.it In previous works, we reported that Solid Oxide Fuel Cells (SOFCs), having a room-temperature sputtered and then annealed GDC thin film as the cathode/electrolyte barrier layer, had showed a huge increase of the output current (up to +78%) and a decrease of the ohmic resistance (up to -42%) as compared to fully screen-printed industrial SOFCs.	cache/cet-13485.pdf	txt/cet-13485.txt
