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Enhanced hydrogen evolution reaction on hybrids of cobalt phosphide and molybdenum phosphide

机译:磷化钴和磷化钼杂化物的增强的放氢反应

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Production of hydrogen from water electrolysis has stimulated the search of sustainable electrocatalysts as possible alternatives. Recently, cobalt phosphide (CoP) and molybdenum phosphide (MoP) received great attention owing to their superior catalytic activity and stability towards the hydrogen evolution reaction (HER) which rivals platinum catalysts. In this study, we synthesize and study a series of catalysts based on hybrids of CoP and MoP with different Co/Mo ratio. The HER activity shows a volcano shape and reaches a maximum for Co/Mo?=?1. Tafel analysis indicates a change in the dominating step of Volmer–Hyrovsky mechanism. Interestingly, X-ray diffraction patterns confirmed a major ternary interstitial hexagonal CoMoP2 crystal phase is formed which enhances the electrochemical activity.
机译:由水电解产生的氢刺激了人们寻求可持续的电催化剂作为可能的替代品。近来,由于磷化钴(CoP)和磷化钼(MoP)具有优异的催化活性和对氢的反应(HER)的稳定性,与铂催化剂相比,其具有出色的催化活性和稳定性,因此备受关注。在这项研究中,我们基于不同Co / Mo比的CoP和MoP杂化物合成并研究了一系列催化剂。 HER活性显示出火山形状,并且对于Co / Mo 2 =Δ1达到最大值。 Tafel分析表明,Volmer-Hyrovsky机制的主导步骤发生了变化。有趣的是,X射线衍射图证实了主要的三元间隙六方CoMoP 2 晶相的形成,增强了电化学活性。

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