Operando Direct Observation of Stable Water-Oxidation Intermediates on Ca2–x IrO4 Nanocrystals for Efficient Acidic Oxygen Evolution

We report Ca2–x IrO4 nanocrystals exhibit record stability of 300 h continuous operation and high iridium mass activity (248 A gIr –1 at 1.5 VRHE) that is about 62 times that of benchmark IrO2. Lattice-resolution images and surface-sensitive spectroscopies demonstrate the Ir-rich surface layer (evol...

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Veröffentlicht in:Nano letters 2022-09, Vol.22 (17), p.6988-6996
Hauptverfasser: Li, Na, Cai, Liang, Gao, Guoping, Lin, Yue, Wang, Chao, Liu, Hengjie, Liu, Yuying, Duan, Hengli, Ji, Qianqian, Hu, Wei, Tan, Hao, Qi, Zeming, Wang, Lin-Wang, Yan, Wensheng
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Sprache:eng
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Zusammenfassung:We report Ca2–x IrO4 nanocrystals exhibit record stability of 300 h continuous operation and high iridium mass activity (248 A gIr –1 at 1.5 VRHE) that is about 62 times that of benchmark IrO2. Lattice-resolution images and surface-sensitive spectroscopies demonstrate the Ir-rich surface layer (evolved from one-dimensional connected edge-sharing [IrO6] octahedrons) with high relative content of Ir5+ sites, which is responsible for the high activity and long-term stability. Combining operando infrared spectroscopy with X-ray absorption spectroscopy, we report the first direct observation of key intermediates absorbing at 946 cm–1 (Ir6+O site) and absorbing at 870 cm–1 (Ir6+OO– site) on iridium-based oxides electrocatalysts, and further discover the Ir6+O and Ir6+OO– intermediates are stable even just from 1.3 VRHE. Density functional theory calculations indicate the catalytic activity of Ca2IrO4 is enhanced remarkably after surface Ca leaching, and suggest IrOO– and IrO intermediates can be stabilized on positive charged active sites of Ir-rich surface layer.
ISSN:1530-6984
1530-6992
DOI:10.1021/acs.nanolett.2c01777