Corrosion-RegulatedSurface Reconstruction for High-PerformanceOxygen Evolution Electrocatalysts
Zhiquan Lang (8250123), Zechao Zhuang (4249459), Guang-Ling Song (11783622), Longfei Guo (4836453), Shuhao Wang (4637881), Xingpeng Liao (22103133), Pengpeng Wu (8375136), Yaxi Li (10835058) 等 14 位
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Surface reconstruction is a common phenomenon during electrode processes, occurring on the surface of electrocatalysts. While corrosion-engineering approaches show promise in this reconstruction, the precise control of surface reaction kinetics remains a significant challenge. In this work, a corrosion kinetics-controlled strategy using a hypophosphite corrosion inhibitor was proposed to achieve a uniform nickel–iron oxyhydroxide (p-(Fe,Ni)OOH) layer through controlled corrosion-induced reconstruction. This p-(Fe,Ni)OOH electrocatalyst shows excellent oxygen-evolving performance, achieving a current density of 10 mA cm<sup>–2</sup> at an overpotential of 217 mV and maintaining stability for over 100 h at 100 mA cm<sup>–2</sup>. The <i>operando</i> spectroscopic characterization and first-principles computations demonstrate that the uniformly reconstructed layer, obtained through controlled corrosion, possesses more favorable interfacial water components and enhanced intrinsic activity. Real-time analyses of ferric ion concentrations and pH values further indicate that the corrosion kinetics-controlled process can be categorized into three distinct stages. This work provides insights into the precise fabrication of electrocatalyst materials through corrosion-induced reconstruction, highlighting the connection between corrosion chemistry and electrocatalyst design.
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工程Electrocatalysts for Energy Conversion
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