Acid-stable manganese oxides for proton exchange membrane water electrolysis

被引:0
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作者
Shuang Kong
Ailong Li
Jun Long
Kiyohiro Adachi
Daisuke Hashizume
Qike Jiang
Kazuna Fushimi
Hideshi Ooka
Jianping Xiao
Ryuhei Nakamura
机构
[1] Biofunctional Catalyst Research Team,Instrumentation and Service Center for Physical Sciences
[2] RIKEN Center for Sustainable Resource Science (CSRS),undefined
[3] State Key Laboratory of Catalysis,undefined
[4] Dalian Institute of Chemical Physics,undefined
[5] Chinese Academy of Sciences,undefined
[6] Materials Characterization Support Team,undefined
[7] RIKEN Center for Emergent Matter Science (CEMS),undefined
[8] Westlake University,undefined
[9] Earth-Life Science Institute (ELSI),undefined
[10] Tokyo Institute of Technology,undefined
来源
Nature Catalysis | 2024年 / 7卷
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摘要
Earth-abundant, acid-stable catalysts for the oxygen evolution reaction are essential for terawatt-scale hydrogen production using proton exchange membrane (PEM) electrolysers. Here we report that optimizing the lattice oxygen structure of manganese oxide allows it to sustain the oxygen evolution reaction for over one month at 1,000 mA cm−2 in 1 M H2SO4. The lifetime enhancement was achieved by substituting pyramidal oxygen with planar oxygen, which has a stronger Mn–O bond and thus suppresses the dissolution of manganese ions. Calculations show that the lattice oxygen dissolution is the bottleneck of deactivation, and this process is less favourable by over 0.2 eV on planar oxygen compared with pyramidal oxygen. Our material shows excellent performance even in a PEM electrolyser, reaching 2,000 mA cm−2 at 2 V with durability exceeding 1,000 h at 200 mA cm−2. This study expands the potential of Earth-abundant catalysts for PEM electrolysis, which may mitigate the reliance on iridium.
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页码:252 / 261
页数:9
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