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Doping beta-CoMoO4 Nanoplates with Phosphorus for Efficient Hydrogen Evolution Reaction in Alkaline Media

机译:掺杂具有磷的β-COMO4纳米层,用于碱性介质中有效的氢进化反应

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Mass production of hydrogen by electrolysis of water largely hinges on the development of highly efficient and economical electrocatalysts for hydrogen evolution reaction (HER). Though having the merits of high earth abundance, easy availability, and tunable composition, transition-metal oxides are usually deemed as poor electrocatalysts for HER. Herein, we demonstrate that doping beta-CoMoO4 nanoplates with phosphorus can turn them into active electrocatalysts for HER Theoretical calculation and experimental studies unravel that enhanced electrical conductivity and optimized hydrogen adsorption free energy are major causes for the improvement of intrinsic activity. As a result, only an overpotential of 138 mV is required to drive hydrogen evolving at a current density of 10 mA cm(-2) in 1 M KOH for P-doped beta-CoMoO4, which outstrips many recently reported transition-metal oxides and is just slightly inferior to commercial Pt/C. This work opens a new route to tune the HER performance of transition-metal oxides.
机译:通过电解水解氢气的大规模生产在很大程度上铰接高效且经济的电催化剂的氢进化反应(她)。虽然具有高原丰度,易用性和可调谐组成的优点,但过渡金属氧化物通常被认为是她的差的电催化剂。在此,我们证明,具有磷的掺杂β-即可纳米层板可以将它们变成有源电催化剂,用于理论计算和实验研究揭开,即增强的导电性和优化的氢吸收自由能是改善内在活性的主要原因。结果,仅需要138mV的过电位,以在1M KOH的10mA cm(-2)的电流密度为p掺杂的β-comoo4中驱动氢气,该β-comoo4超出许多最近报告的过渡金属氧化物和略微不如商业pt / c。这项工作开辟了一种新的途径来调整她的过渡金属氧化物的性能。

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