论文标题

什么X射线吸收光谱可以告诉我们氧气进化反应的地球丰富电催化剂的活性状态

What X-ray absorption spectroscopy can tell us about the active state of earth-abundant electrocatalysts for the oxygen evolution reaction

论文作者

Risch, Marcel, Morales, Dulce M., Villalobos, Javier, Antipin, Denis

论文摘要

化学能源存储是确保可持续能源供应的有吸引力的解决方案。它要求有效地实施电催化剂。为了合理地改善电催化剂材料,从而反应效率,必须在反应条件下(即其活性状态)揭示电催化剂的性质。为了更好地理解氧气进化反应(OER)的电催化剂,将电化学(EC)方法和X射线吸收光谱(XAS)的组合非常有见地,并且仍然具有未开发的电位。本文中,我们简洁地介绍了EC和XAS的基础知识,并提供了必要的框架来讨论电催化材料经历的变化,并将锰氧化物作为例子。在制备和存储期间,浸入电解质中以及在没有催化反应的电势期间,可能会发生这种变化。最后,我们简要概述了EC和XAS目前如何合并以阐明活跃状态,以及对未来的机会,以了解使用合并的Operando EC-XAS实验来理解电催化的机制。

Chemical energy storage is an attractive solution to secure a sustainable energy supply. It requires an electrocatalyst to be implemented efficiently. In order to rationally improve the electrocatalyst materials and thereby the reaction efficiency, one must reveal the nature of the electrocatalyst under reaction conditions, i.e., its active state. For a better understanding of earth-abundant metal oxides as electrocatalysts for the oxygen evolution reaction (OER), the combination of electrochemical (EC) methods and X-ray absorption spectroscopy (XAS) has been very insightful and still holds untapped potential. Herein, we concisely introduce the basics of EC and XAS and provide the necessary framework to discuss changes that electrocatalytic materials undergo, presenting manganese oxides as examples. Such changes may occur during preparation and storage, during immersion in an electrolyte, as well as during application of potentials without or with catalytic reactions. We conclude with a concise summary of how EC and XAS are currently combined to elucidate the active state as well as an outlook on future opportunities to understand the mechanisms of electrocatalysis using combined operando EC-XAS experiments.

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