4.6 Article

Porous FeP/CoP heterogeneous materials as efficient alkaline oxygen evolution reaction (OER) catalysts

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NEW JOURNAL OF CHEMISTRY
卷 46, 期 32, 页码 15351-15357

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d2nj01557a

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  1. Jiangxi University of Science and Technology [jxxjbs18062]
  2. Jiangxi Provincial Key Laboratory of Flash Green Development and Recycling [20193BCD40019]

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In this study, FeP/CoP heterogeneous materials with a unique porous morphology were designed and synthesized as oxygen evolution reaction (OER) catalysts, demonstrating excellent catalytic activity and stability. The results provide new ideas for designing efficient metal phosphide-based OER catalysts.
Transition metal phosphides have been widely studied because of their low cost and good conductivity, attempting to replace precious metal-based materials as new electrochemical catalysts for oxygen evolution reaction. However, the existing high-performance phosphide catalysts for oxygen evolution reaction have bottlenecks such as difficulty to accurately determine the components and the catalytic mechanism. Therefore, in this study, we designed and synthesized FeP/CoP heterogeneous materials with a unique porous morphology as OER catalysts. The as-prepared heterogeneous materials have excellent OER catalytic activity and stability. The overpotential at 10 mA cm(-2) is only 266 mV, and the Tafel slope is 60.86 mV dec(-1). We believe that the good catalytic performance of the as-prepared material is mainly due to the unique morphology and redistribution of interfacial charges. The results of this study provide new ideas for designing efficient metal phosphide-based OER catalysts.

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