催化作用
吸附
材料科学
过电位
化学工程
电催化剂
氢氧化物
电子转移
无机化学
磷化物
碳纤维
化学
物理化学
电化学
有机化学
复合材料
电极
复合数
工程类
作者
Guowei Li,Qun Yang,Jiancun Rao,Chenguang Fu,Sz‐Chian Liou,Gudrun Auffermann,Yan Sun,Claudia Felser
标识
DOI:10.1002/adfm.201907791
摘要
Abstract Carbon‐based materials have been widely used in heterogeneous catalysis because of their advantages of high surface area, thermal stability, and chemical inertness. However, their role in the catalysis is not fully understood although most studies conclude that the coupling between the carbon support and catalyst could reduce the charge transfer resistance and improve the kinetics of catalytic reactions such as water splitting. In this study, a carbon‐modified FeP 2 electrocatalyst with a one‐step strategy is synthesized. The tensile strain is introduced in situ in the ab crystal plane of the FeP 2 catalyst. This leads to charge redistribution between H and O atoms in the OH bonds and enhances the adsorption of reaction intermediates. In the water oxidation process, this results in a decrease in the energy barrier for the rate‐determining step, specifically, the chemical step of *OH adsorption preceded by one‐electron transfer. Benefiting from the optimized adsorption energy, the strained catalysts exhibit excellent oxygen evolution reaction (OER) activity with a low overpotential in addition to their increased stability. This study provides a new strategy for the introducing of strains in functional materials and provides new insights into the influence of carbon modification on OER activity.
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