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Toward Design of Synergistically Active Carbon-Based Catalysts for Electrocatalytic Hydrogen Evolution

机译:协同活性炭基电催化产氢催化剂的设计

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摘要

Replacement of precious Pt catalyst with cost-effective alternatives would be significantly beneficial for hydrogen production via electrocatalytic hydrogen evolution reaction (HER). All candidates thus far are exclusively metallic catalysts, which suffer inherent corrosion and oxidation susceptibility during acidic proton-exchange membrane electrolysis. Herein, based on theoretical predictions, we designed and synthesized nitrogen (N) and phosphorus (P) dual-doped graphene as a nonmetallic electrocatalyst for sustainable and efficient hydrogen production. The N and P heteroatoms could coactivate the adjacent C atom in the graphene matrix by affecting its valence orbital energy levels to induce a synergistically enhanced reactivity toward HER. As a result, the dual-doped graphene showed higher electrocatalytic HER activity than single-doped ones and comparable performance to some of the traditional metallic catalysts.
机译:用具有成本效益的替代品替代珍贵的Pt催化剂,将对通过电催化制氢反应(HER)的制氢显着有利。迄今为止,所有候选者仅是金属催化剂,其在酸性质子交换膜电解期间遭受固有的腐蚀和氧化敏感性。本文中,基于理论预测,我们设计并合成了氮(N)和磷(P)双掺杂石墨烯作为非金属电催化剂,以可持续且高效地生产氢气。 N和P杂原子可以通过影响石墨烯的化合价轨道能级,使其对HER的协同活性增强,从而共同激活石墨烯基体中相邻的C原子。结果,双掺杂石墨烯显示出比单掺杂石墨烯更高的电催化HER活性,并且具有与某些传统金属催化剂相当的性能。

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