催化作用
析氧
材料科学
双功能
电解质
脱氢
双金属片
离解(化学)
氢
无机化学
吸附
解吸
电极
化学工程
物理化学
电化学
化学
有机化学
工程类
作者
Keyu Wang,Chen Liang,Zhiyuan Yi,Fang Xu,Yixing Wang,Linfeng Lei,Linzhou Zhuang,Zhiheng Li
标识
DOI:10.1007/s40843-023-2553-7
摘要
Replacing sluggish oxygen evolution reaction (OER) by hydrazine oxidation reaction (HzOR) is a promising way to produce hydrogen and suppress unfavorable chlorine evolution reaction (ClER) in long-term seawater splitting. However, few catalysts can meet the demand to process outstanding hydrogen evolution reaction (HER) and HzOR simultaneously to achieve relatively low cell voltage in a two-electrode system. Herein, we report bimetallic Ni4Mo/Ni4W nanoalloys as bifunctional catalysts with remarkable catalytic activity towards both HER (−7 mV at 10 mA cm−2) and HzOR (−16 mV at 10 mA cm−2). Surprisingly, low cell voltages of 34, 295 and 548 mV are required to achieve 10, 100 and 200 mA cm−2 in a two-electrode system with ideal stability in 1.0 mol L−1 KOH/2.0 mol L−1 NaCl/0.1 mol L−1 N2H4 electrolyte. Density functional theory calculations disclose that the Ni−Mo/W coupling can not only reduce the free energy of water dissociation as well as hydrogen adsorption/desorption, but also optimize the dehydrogenation kinetics of adsorbed intermediates.
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