高圧力の科学と技術
Online ISSN : 1348-1940
Print ISSN : 0917-639X
ISSN-L : 0917-639X
特集:高圧力場が切り拓く材料科学の新展開
高圧合成法を活用した触媒材料開発と第一原理計算によるメカニズム解明
山田 幾也高松 晃彦池野 豪一八木 俊介
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2018 年 28 巻 3 号 p. 184-192

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Recent advances in high-pressure synthesis and theoretical investigation of novel transition metal oxide catalysts for oxygen evolution/reduction reactions (OER/ORRs) are reviewed. Valence dependence of OER catalysis for perovskite oxides are demonstrated by comparative study of iron perovskite oxides synthesized under high pressure. Structure effects on OER catalytic activity are investigated in manganese oxides with simple ABO3-type and quadruple AA3B4O12-type structures. In addition to intrinsic high ORR activities, electrochemical experiments display that OER activities of quadruple perovskites AMn7O12 (A=Ca, La) are superior to those of simple perovskite AMnO3 counterparts, leading to OER/ORR bifunctional catalysis. Theoretical calculations propose a OER mechanism for quadruple manganese perovskite oxide, in which adsorption sites bridging between A′- and B-site Mn atoms play a crucial role in lowering OER overpotentials.
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© 2018 日本高圧力学会
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