在中性 pH 值条件下进行水分离相关反应的单/双原子电催化剂

Ning Wang , Enhao Li , Zhaoyuan Lyu , Shichao Ding , Xintian Wang , Hua Wang , Xiao Zhang , Dan Du , Yuehe Lin , Wenlei Zhu
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摘要

化石燃料消耗带来的能源危机和复杂的环境问题推动了可再生能源的开发和利用,而电化学水分离(EWS)是生产清洁可再生能源(氢气)的有效途径和理想方法。迄今为止,大多数与 EWS 相关的反应主要是在酸性和碱性条件下进行研究的,这些反应取得了相对优异的催化活性和效率,但也存在一定的安全隐患,如腐蚀、污染和废液的产生,此外还需要耐酸碱的电催化材料和昂贵的阴/阳离子交换膜。为了克服这些缺点,开发用于中性 EWS 的先进催化剂成为一种具有吸引力且更可持续的选择。遗憾的是,有关中性条件下氢进化反应(HER)和氧进化反应(OER)以及其他阳极氧化反应的理论探讨和实际应用相对较少。单/双原子电催化剂(S/DACs)具有金属利用效率最高、活性位点均匀、协同效应显著等特点,在中性条件下的 EWS 相关反应中表现出巨大的潜力。因此,我们对中性 HER/OER 进行了简要的机理探讨,重点介绍了 S/DACs 的合成、调控策略、表征技术和目前在中性条件下 EWS 相关反应中的代表性应用,以及 S/DACs 所面临的挑战和前景。本综述可为促进中性条件下高效制氢的实际应用提供一些启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single/dual-atom electrocatalysts for water splitting related reaction at neutral pH

The energy crisis and complex environmental issues stemming from fossil fuel consumption have propelled the development and utilization of renewable energy sources, with electrochemical water splitting (EWS) being an effective way and ideal method for producing clean and renewable energy (hydrogen). Up to now, the majority of EWS-related reactions have been studied mainly under acidic and alkaline conditions, which have achieved relatively excellent catalytic activities and efficiencies, albeit with certain safety risks, accompanied by corrosion, contamination, and the generation of waste liquids, in addition to the demand for acid- and alkali-resistant electrocatalytic materials as well as costly anion/cation-exchange membranes. To overcome these shortcomings, the development of advanced catalysts for neutral EWS becomes an attractive and more sustainable option. Unfortunately, there are relatively few theoretical discussions and practical applications of hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) as well as other anodic oxidation reactions under neutral conditions. Single/dual-atom electrocatalysts (S/DACs), characterized by maximum metal utilization efficiency, homogeneous active sites, and remarkable synergistic effect, exhibit great potential for EWS-related reactions under neutral conditions. Therefore, we provide a brief mechanistic discussion of neutral HER/OER, focusing on the synthesis, modulation strategies, characterization techniques and current representative applications in EWS-related reactions under neutral conditions, as well as the challenges and prospects of S/DACs. This review may provide some insights to facilitate the practical application of efficient hydrogen production under neutral conditions.

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