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Electronic structural regulation of CoP nanorods by the tunable incorporation of oxygen for enhanced electrocatalytic activity during the hydrogen evolution reaction

机译:电子警察纳米结构调控可调结合的氧增强electrocatalytic活动期间析氢反应

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摘要

The exploration of cost-effective and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) is of great significance for realizing sustainable H(2)production. As previously proposed, anion incorporation in promising earth-abundant transition metal-based electrocatalysts could be a reasonable and competitive approach to regulate the electronic structure with optimized atomic hydrogen adsorption and desorption for enhanced intrinsic electrocatalytic performance during the HER. Herein, we present the rational design and fabrication of O-incorporated CoP (expressed as O-CoP) nanorods with a controllable component and electronic structure. As demonstrated, when the lattice-incorporated O is at an appropriate concentration, the engineered O-CoP nanocatalysts have more active sites exposed with an increased number of electrochemically active areas and better electron/ion conductivity, leading to boosted HER activity and running stability. Typically, the obtained O-CoP nanorods with an optimal oxygen content exhibit excellent HER activity with an overpotential of 116 mV at a current density of 10 mA cm(-2)and a small Tafel slope of 59 mV dec(-1)in alkaline media. This anion doping strategy may make a widespread contribution to the efficient engineering of electrocatalysts for energy conversion devices.
机译:有成本效益的和高度的探索高效的氢electrocatalysts进化反应(她)具有重要意义实现可持续的H(2)生产。之前提出,阴离子结合希望地球上充足的过渡金属electrocatalysts可以合理竞争的方法来调节电子结构优化的氢原子吸附和解吸增强的内在在她electrocatalytic性能。在此,我们提出合理的设计制造O-incorporated警察(表示为O-CoP)可控组件和纳米棒电子结构。在一个适当的lattice-incorporated O浓度,设计O-CoP nanocatalysts有更积极的网站暴露增加吗电化学领域更好的电子/离子电导率,导致提高她的活动和运行稳定。通常,获得O-CoP纳米棒的最优氧含量表现出优秀的她活动116 mV的过电压电流密度的马10厘米(2)和一个小塔费尔的斜率59 mV 12月(1)在碱性介质。阴离子掺杂策略可以广泛有效的工程所做的贡献electrocatalysts能源转换设备。

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