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使用从头算分子动力学确定赤铁矿上析氧反应的关键中间体。

Identifying key intermediates for the oxygen evolution reaction on hematite using ab-initio molecular dynamics.

作者信息

Xu Shuai, Yang Jiarui, Su Peixian, Wang Qiang, Yang Xiaowei, Zhou Zhaohui, Li Yuliang

机构信息

Department of Chemical Engineering, School of Water and Environment, Chang'an University, Xi'an, China.

Key Laboratory of Subsurface Hydrology and Ecological Effect in Arid Region of the Ministry of Education, Chang'an University, Xi'an, China.

出版信息

Nat Commun. 2024 Nov 29;15(1):10411. doi: 10.1038/s41467-024-54796-9.

Abstract

Hematite is a well-known catalyst for the oxygen evolution reaction on photoanodes in photoelectrochemical water-splitting cells. However, the knowledge of hematite-water interfaces and water oxidation mechanisms is still lacking, which limits improvements in photoelectrochemical water-splitting performance. Herein, we use the Fe-terminated hematite (0001) surface as a model and propose a comprehensive mechanism for the oxygen evolution reaction on both non-solvated and solvated surfaces. Key reaction intermediates are identified through ab initio molecular dynamics simulations at the density functional theory level with a Hubbard U correction. Several notable intermediates are proposed, and the effects of water solvent on these intermediates and the overall reaction mechanisms are suggested. The proposed mechanisms align well with experimental observations under photoelectrochemical water oxidation conditions. Additionally, we highlight the potential role of O desorption in the oxygen evolution reaction on hematite, as O adsorption may block reaction sites and increases surface hydrophobicity, leading to an unfavorable pathway for oxygen evolution.

摘要

赤铁矿是光电化学水分解电池中光阳极上析氧反应的一种著名催化剂。然而,目前仍缺乏对赤铁矿 - 水界面和水氧化机制的了解,这限制了光电化学水分解性能的提升。在此,我们以铁端接的赤铁矿(0001)表面为模型,提出了一种关于非溶剂化和溶剂化表面析氧反应的综合机制。通过在密度泛函理论水平上进行含哈伯德U校正的从头算分子动力学模拟,确定了关键反应中间体。提出了几种值得注意的中间体,并探讨了水溶剂对这些中间体以及整体反应机制的影响。所提出的机制与光电化学水氧化条件下的实验观察结果吻合良好。此外,我们强调了氧脱附在赤铁矿析氧反应中的潜在作用,因为氧吸附可能会阻塞反应位点并增加表面疏水性,从而导致不利于析氧的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e52a/11607335/c6dfa63ae3fd/41467_2024_54796_Fig1_HTML.jpg

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