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锌阳极表面析氢反应的基本理解:第一性原理研究

Fundamental Understanding of Hydrogen Evolution Reaction on Zinc Anode Surface: A First-Principles Study.

作者信息

Liu Xiaoyu, Guo Yiming, Ning Fanghua, Liu Yuyu, Shi Siqi, Li Qian, Zhang Jiujun, Lu Shigang, Yi Jin

机构信息

Institute for Sustainable Energy & Department of Chemistry, Shanghai University, Shanghai, 200444, People's Republic of China.

School of Materials Science and Engineering, Shanghai University, Shanghai, 200444, People's Republic of China.

出版信息

Nanomicro Lett. 2024 Feb 6;16(1):111. doi: 10.1007/s40820-024-01337-0.

Abstract

Hydrogen evolution reaction (HER) has become a key factor affecting the cycling stability of aqueous Zn-ion batteries, while the corresponding fundamental issues involving HER are still unclear. Herein, the reaction mechanisms of HER on various crystalline surfaces have been investigated by first-principle calculations based on density functional theory. It is found that the Volmer step is the rate-limiting step of HER on the Zn (002) and (100) surfaces, while, the reaction rates of HER on the Zn (101), (102) and (103) surfaces are determined by the Tafel step. Moreover, the correlation between HER activity and the generalized coordination number ([Formula: see text]) of Zn at the surfaces has been revealed. The relatively weaker HER activity on Zn (002) surface can be attributed to the higher [Formula: see text] of surface Zn atom. The atomically uneven Zn (002) surface shows significantly higher HER activity than the flat Zn (002) surface as the [Formula: see text] of the surface Zn atom is lowered. The [Formula: see text] of surface Zn atom is proposed as a key descriptor of HER activity. Tuning the [Formula: see text] of surface Zn atom would be a vital strategy to inhibit HER on the Zn anode surface based on the presented theoretical studies. Furthermore, this work provides a theoretical basis for the in-depth understanding of HER on the Zn surface.

摘要

析氢反应(HER)已成为影响水系锌离子电池循环稳定性的关键因素,然而,涉及析氢反应的相应基本问题仍不明确。在此,基于密度泛函理论的第一性原理计算研究了析氢反应在各种晶体表面的反应机理。研究发现,在锌(002)和(100)表面上,伏尔默步骤是析氢反应的速率限制步骤,而在锌(101)、(102)和(103)表面上,析氢反应的速率由塔菲尔步骤决定。此外,还揭示了析氢活性与表面锌的广义配位数([公式:见原文])之间的相关性。锌(002)表面上相对较弱的析氢活性可归因于表面锌原子较高的[公式:见原文]。随着表面锌原子的[公式:见原文]降低,原子级不平坦的锌(002)表面显示出比平坦的锌(002)表面显著更高的析氢活性。表面锌原子的[公式:见原文]被提出作为析氢活性的关键描述符。基于所提出的理论研究,调节表面锌原子的[公式:见原文]将是抑制锌阳极表面析氢反应的重要策略。此外,这项工作为深入理解锌表面的析氢反应提供了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afca/11250978/99d8e6bba013/40820_2024_1337_Fig1_HTML.jpg

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