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亚层硫空位诱导的FeCuS纳米花电荷再分布促进碱性析氢反应

Sublayer-Sulfur-Vacancy-Induced Charge Redistribution of FeCuS Nanoflower Awakening Alkaline Hydrogen Evolution.

作者信息

Liu Li, Xu Jie, Cao Jinming, Liu Yangxi, Bai Yuanjuan, Ma Xinguo, Yang Xiaohui

机构信息

Chongqing Key Laboratory of Green Catalysis Materials and Technology, College of Chemistry, Chongqing Normal University, Chongqing 401331, China.

College of Material Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China.

出版信息

Inorg Chem. 2024 Apr 29;63(17):7946-7954. doi: 10.1021/acs.inorgchem.4c00915. Epub 2024 Apr 15.

Abstract

Advancing the progress of sustainable and green energy technologies requires the improvement of valid electrocatalysts for the hydrogen evolution reaction (HER). Reconfiguring charge distribution through heteroatom doping-induced vacancy serves as an effective approach to implement high performance for HER catalysts. Here, we successfully fabricated Fe-doped CuS (FeCuS) with the sublayer sulfur vacancy to judge its HER performance and dissect the activity origins. Density functional theory calculation further elucidates that the primary factor contributing to the heightened HER activity is that the sublayer sulfur vacancies awaken the charge redistribution. In addition to effectively decreasing the energy barrier associated with the Volmer step, it modulates the adsorption/desorption capacity of H*. As a result, its intrinsic activity for the HER has significantly increased. Concretely, the obtained FeCuS displays an excellent catalytic performance, whose Tafel slope is only 59 mV dec and the overpotential (at 10 mA cm) is as low as 71 mV in an alkaline environment, surpassing the majority of previously documented catalysts in scientific literature. This work shows that the construction of sublayer sulfur vacancies by Fe doping can achieve the charge redistribution and precise tuning of electronic structure; thereby, the inert CuS can be transformed into highly efficient electrocatalysts.

摘要

推动可持续和绿色能源技术的进步需要改进用于析氢反应(HER)的有效电催化剂。通过杂原子掺杂诱导空位来重新配置电荷分布是实现HER催化剂高性能的有效方法。在此,我们成功制备了具有亚层硫空位的铁掺杂硫化铜(FeCuS),以评估其HER性能并剖析活性来源。密度泛函理论计算进一步阐明,导致HER活性提高的主要因素是亚层硫空位引发了电荷重新分布。除了有效降低与Volmer步骤相关的能垒外,它还调节了H*的吸附/解吸能力。结果,其HER的本征活性显著提高。具体而言,所制备的FeCuS表现出优异的催化性能,在碱性环境中其塔菲尔斜率仅为59 mV dec,过电位(在10 mA cm下)低至71 mV,超过了科学文献中大多数先前报道的催化剂。这项工作表明,通过铁掺杂构建亚层硫空位可以实现电荷重新分布和电子结构的精确调控;从而将惰性的CuS转化为高效的电催化剂。

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