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Copper doping-induced high-valence nickel-iron-based electrocatalyst toward enhanced and durable oxygen evolution reaction

机译:铜掺杂诱导的高价镍铁基电催化剂增强持久析氧反应

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摘要

Heteroatom doping in NiFe-based electrocatalyst is one of the effective strategies to improve the performance of oxygen evolution reaction (OER). Herein, a nickel foam-supported, copper-doped, tube-structured, nickel-iron-based OER electrocatalyst is fabricated. This Ni(Cu)Fe/NF electrode achieves excellent OER activity with a low overpotential of 240 mV at 20 mA cm -2. When equipped in an anion exchange membrane water electrolyzer, outstanding stability is also achieved at 400 mA cm -2. The underlying mechanism of Cu doping governing the enhanced OER performance is systematically revealed. It is found that the Cu doping in NiFe species induces the formation of high-valence Ni state and the reconstruction of active g-NiOOH species. This Cu-doped g-NiOOH presents strengthened Ni-O bonding, resulting in favorable adsorption energy of active OER intermediates with reduced energy barriers, thus accelerating the catalytic reaction kinetics. The working mechanism of Cu-doped NiFe catalysts is instructive for the rational design of NiFe-based OER catalysts.
机译:在NiFe基电催化剂中杂原子掺杂是提高析氧反应(OER)性能的有效策略之一。本文制备了一种泡沫镍负载、铜掺杂、管状结构、镍铁基OER电催化剂。该Ni(Cu)Fe/NF电极在20 mA cm -2时具有240 mV的低过电位,可实现出色的OER活性。当配备在阴离子交换膜水电解槽中时,在 400 mA cm -2 下也能实现出色的稳定性。系统地揭示了铜掺杂控制OER性能增强的潜在机制。研究发现,NiFe物种中Cu掺杂诱导了高价Ni态的形成和活性g-NiOOH物种的重建。该Cu掺杂的g-NiOOH表现出增强的Ni-O键合,使活性OER中间体具有良好的吸附能,降低了能垒,从而加速了催化反应动力学。Cu掺杂NiFe催化剂的工作机理对NiFe基OER催化剂的合理设计具有指导意义。

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