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首页> 外文期刊>Advanced energy materials >Synergistically Tuning Water and Hydrogen Binding Abilities Over Co_4N by Cr Doping for Exceptional Alkaline Hydrogen Evolution Electrocatalysis
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Synergistically Tuning Water and Hydrogen Binding Abilities Over Co_4N by Cr Doping for Exceptional Alkaline Hydrogen Evolution Electrocatalysis

机译:Cr掺杂协同调节Co_4N上水和氢的结合能力,以实现优异的碱性氢释放电催化作用

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摘要

Searching for highly efficient and cost-effective electrocatalysts toward the hydrogen evolution reaction (HER) in alkaline electrolyte is highly desirable for the development of alkaline water splitting, but still remains a significant challenge. Herein, the rational design of Cr-doped Co4N nanorod arrays grown on carbon cloth (Cr-Co4N/CC) that can efficiently catalyze the HER in alkaline media is reported. It displays outstanding performance, with the exceptionally small overpotential of 21 mV to obtain the current density of 10 mA cm(-2) and good stability in 1.0 m KOH, which is even better than the commercial Pt/C electrocatalyst, and much lower than most of the reported transition metal nitride-based and other non-noble metal-based electrocatalysts toward the alkaline HER. Density functional theory (DFT) calculations and experimental results reveal that the Cr atoms not only act as oxophilic sites for boosting water adsorption and dissociation, but also modulate the electronic structure of Co4N to endow optimized hydrogen binding abilities on Co atoms, thereby leading to accelerating both the alkaline Volmer and Heyrovsky reaction kinetics. In addition, this strategy can be extended to other metals (such as Mo, Mn, and Fe) doped Co4N electrocatalysts, thus may open up a new avenue for the rational design of highly efficient transition metal nitride-based HER catalysts and beyond.
机译:对于碱性水分解的发展,在碱性电解质中寻找针对氢释放反应(HER)的高效且有成本效益的电催化剂是非常期望的,但仍然是一个重大挑战。在本文中,报告了合理设计的在碳布上生长的Cr掺杂的Co4N纳米棒阵列(Cr-Co4N / CC)可以有效催化碱性介质中的HER。它具有出色的性能,具有21 mV的极小过电位,可获得10 mA cm(-2)的电流密度,并在1.0 m KOH中具有良好的稳定性,这甚至比市售Pt / C电催化剂还要好,但远低于大多数报道的过渡金属氮化物基和其他非贵金属基电催化剂都向碱性HER转移。密度泛函理论(DFT)计算和实验结果表明,Cr原子不仅充当促进水吸附和解离的亲氧性位点,而且调节Co4N的电子结构以赋予Co原子最优化的氢键合能力,从而加速碱性沃尔默和海洛夫斯基反应动力学均如此。此外,该策略可以扩展到其他金属(例如Mo,Mn和Fe)掺杂的Co4N电催化剂,从而可以为合理设计高效过渡金属氮化物基HER催化剂及其他方法开辟新的途径。

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