2020年第81回応用物理学会秋季学術講演会

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6 薄膜・表面 » 6.4 薄膜新材料

[10p-Z05-1~19] 6.4 薄膜新材料

2020年9月10日(木) 12:30 〜 17:30 Z05

田中 勝久(京大)、中村 吉伸(東大)、村岡 祐治(岡山大)

16:30 〜 16:45

[10p-Z05-16] Solid-State Electrochemical Protonation/Oxidation of Oxygen Sponge SrCoO2.5 Films

〇(DC)Qian Yang1、Bin Feng2、Yuichi Ikuhara2、Hyoungjeen Jeen3、Hai Jun Cho1,4、Hiromichi Ohta1,4 (1.IST-Hokkaido U.、2.U. Tokyo、3.Pusan Nat'l U.、4.RIES-Hokkaido U.)

キーワード:Electrochemical Protonation and Oxidation, Solid-State Electrolyte

Due to the flexibility of the valence state of cobalt ion, brownmillerite SrCoO2.5 can be protonated/oxidized by an electrochemical reaction with H+ / OH ions. Owing to the electrochemical protonation/oxidation, the physical properties of SrCoO2.5 can be modulated from antiferromagnetic insulator (SrCoO2.5, Co3+) to ferromagnetic insulator (HSrCoO2.5, Co2+) / ferromagnetic metal (SrCoO3, Co4+). Further, the color of SrCoO2.5 can be modulated from colorless transparent (Co2+) to brown (Co3+) and black (Co4+). To utilize these changes in practical device applications, the solid-state device is favorable compared to liquid-state devices. In 2016, Katase et al. demonstrated electrochemical Redox reaction between SrCoO2.5 and SrCoO3 using amorphous NaTaO3 film as the solid-electrolyte. However, there is no report on the solid-state protonation/deprotonation reaction between SrCoO2.5 and HSrCoO2.5. Here we demonstrate that solid-state electrochemical protonation/deprotonation of SrCoO2.5 for the first time.