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Enhanced lithium-ion intercalation and conduction of transparent tantalum oxide films by lithium addition with an atmospheric pressure plasma jet
Authors:Yung-Sen Lin  Ping-Ju Sung  Tzung-Han Tsai  Ming-Ho Hsieh  Hsiang Chen  Chia-Feng Lin  Chyuan Hauer Kao
Institution:1.Department of Chemical Engineering,Feng Chia University,Taichung,Republic of China;2.Department of Applied Materials and Optoelectronic Engineering,National Chi Nan University,Nantou County,Republic of China;3.Department of Materials Science and Engineering,National Chung Hsing University,Taichung,Republic of China;4.Department of Electronics Engineering,Chang Gung University,Tao Yuan,Republic of China
Abstract:An investigation is conducted on enhancing lithium-ion intercalation and conduction performance of transparent organo tantalum oxide (TaO y C z ) films, by addition of lithium via a fast co-synthesis onto 40 Ω/□ flexible polyethylene terephthalate/indium tin oxide substrates at the short exposed durations of 33–34 s, using an atmospheric pressure plasma jet (APPJ) at various mixed concentrations of tantalum ethoxide Ta(OC2H5)5] and lithium tert-butoxide (CH3)3COLi] precursors. Transparent organo-lithiated tantalum oxide (Li x TaO y C z ) films expose noteworthy Li+ ion intercalation and conduction performance for 200 cycles of reversible Li+ ion intercalation and deintercalation in a 1 M LiClO4-propylene carbonate electrolyte, by switching measurements with a potential sweep from ?1.25 to 1.25 V at a scan rate of 50 mV/s and a potential step at ?1.25 and 1.25 V, even after being bent 360° around a 2.5-cm diameter rod for 1000 cycles. The Li+ ionic diffusion coefficient and conductivity of 6.2?×?10?10 cm2/s and 6.0?×?10?11 S/cm for TaO y C z films are greatly progressed of up to 9.6?×?10?10 cm2/s and 7.8?×?10?9 S/cm for Li x TaO y C z films by co-synthesis with an APPJ.
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