Unlocking the Transition of Electrochemical Water Oxidation Mechanism Induced by Heteroatom Doping

过电位 杂原子 析氧 过渡金属 兴奋剂 电化学 化学 无机化学 氧气 催化作用 材料科学 物理化学 有机化学 电极 光电子学 戒指(化学)
作者
Xuan Li,Chen Deng,Yan Kong,Qihua Huo,Lingren Mi,Jianju Sun,Jianyong Cao,Jiaxin Shao,Xinbao Chen,Weiliang Zhou,Miaoyuan Lv,Xiaoyan Chai,Hengpan Yang,Qi Hu,Chuanxin He
出处
期刊:Angewandte Chemie [Wiley]
卷期号:62 (40) 被引量:115
标识
DOI:10.1002/anie.202309732
摘要

Abstract Heteroatom doping has emerged as a highly effective strategy to enhance the activity of metal‐based electrocatalysts toward the oxygen evolution reaction (OER). It is widely accepted that the doping does not switch the OER mechanism from the adsorbate evolution mechanism (AEM) to the lattice‐oxygen‐mediated mechanism (LOM), and the enhanced activity is attributed to the optimized binding energies toward oxygen intermediates. However, this seems inconsistent with the fact that the overpotential of doped OER electrocatalysts (<300 mV) is considerably smaller than the limit of AEM (>370 mV). To determine the origin of this inconsistency, we select phosphorus (P)‐doped nickel‐iron mixed oxides as the model electrocatalysts and observe that the doping enhances the covalency of the metal‐oxygen bonds to drive the OER pathway transition from the AEM to the LOM, thereby breaking the adsorption linear relation between *OH and *OOH in the AEM. Consequently, the obtained P‐doped oxides display a small overpotential of 237 mV at 10 mA cm −2 . Beyond P, the similar pathway transition is also observed on the sulfur doping. These findings offer new insights into the substantially enhanced OER activity originating from heteroatom doping.
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