基于钒掺杂Mo2C、Mo2N和还原氧化石墨烯的水中析氢有效电催化剂

D. Mazur, Y. Kurys', V. Koshechko, V. Pokhodenko
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引用次数: 0

摘要

钼化合物(Mo2C, MoS2, MoP, Mo2N等)及其与不同纳米碳材料的复合材料被认为是最有前途的无pt析氢反应(HER)电催化剂之一。除了非金属掺杂剂(N, P等)外,d金属也被用作掺杂剂,以提高HER中含mo杂化催化剂的活性。因此,我们最近展示了利用基于聚吡罗的H3PVMo11O40 (PVMo11)和rGO - V-Mo2C/N,P-rGO的前驱体,获得基于Mo2C和N,P-rGO的钒掺杂颗粒的HER纳米复合电催化剂的可能性。研究发现,与未掺杂钒原子的类似物相比,原位掺杂钒原子促进了HER中催化剂活性的提高。含氮共轭聚合物的性质也会影响这种大分子与金属前驱体在高温加工过程中形成的含金属颗粒的类型。鉴于此,本文提出了通过对聚5-氨基吲哚、PVMo11和rGO复合前驱体的热解,获得基于钒掺杂Mo2C、Mo2N和N、p掺杂rGO (V-Mo2C、Mo2N/N、P-rGO)的复合型HER电催化剂的可能性。结果表明,与仅含Mo2C相(V-Mo2C/N,P-rGO)的类似物相比,Mo2C相和Mo2C相同时存在导致HER中V-Mo2C、Mo2N/N、P-rGO的活性增加,表现为在电流密度为10 mA/cm2 (15-29 mV)时析氢过电位降低,交换电流大小增加约2.3-2.7倍;以及过程开始电位的阳极位移和Tafel斜率的降低(在碱性电解质中)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFFECTIVE ELECTROCATALYST FOR HYDROGEN EVOLUTION FROM WATER BASED ON VANADIUM DOPED Mo2C, Mo2N AND REDUCED GRAPHENE OXIDE
Molybdenum compounds (Mo2C, MoS2, MoP, Mo2N, etc.) and their composites with different nanosized carbon materials are considered to be one of the most promising Pt-free hydrogen evolution reaction (HER) electrocatalysts. Along with non-metallic dopants (N, P etc.), d-metals are also used as dopants to increase the activity of Mo-containing hybrid catalysts in HER. Thus, we have recently shown the possibility of obtaining HER nanocomposite electrocatalysts based on vanadium doped particles of Mo2C and N,P-doped reduced graphene oxide (rGO) using precursor based on polypyrrole, H3PVMo11O40 (PVMo11) and rGO – V-Mo2C/N,P-rGO. It was found that doping with vanadium atoms in situ promotes an increase in the activity of catalysts in HER, compared with the analogue obtained in the absence of V doping. The nature of the nitrogen-containing conjugated polymer can also affect the type of metal-containing particles formed during the high-temperature processing of such macromolecules together with the metal precursors. Given this, the paper shows the possibility of obtaining a promising hybrid electrocatalyst for HER based on vanadium-doped Mo2C, Mo2N and N,P-doped rGO (V-Mo2C,Mo2N/N,P-rGO) by pyrolysis of composite-precursor based on poly-5-aminoindole, PVMo11 and rGO. It was found that the simultaneous presence of Mo2C and Mo2N phases in the catalyst causes an increase in the activity of V-Mo2C,Mo2N/N,P-rGO in HER compared to the analogue containing only Mo2C phase (V-Mo2C/N,P-rGO), which is manifested in reduction in hydrogen evolution overpotential at a current density of 10 mA/cm2 (on 15-29 mV), an increase in the magnitude of exchange currents (by ~ 2.3-2.7 times), as well as in the anodic shift of the process onset potential and the reduction of Tafel slope (in alkaline electrolyte).
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