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缺陷金属氧化物:CO 还原的教训及其在 NO 还原中的应用。

Defective Metal Oxides: Lessons from CO RR and Applications in NO RR.

机构信息

School of Chemical Engineering, The University of New South Wales, Sydney, NSW, 2052, Australia.

出版信息

Adv Mater. 2023 Jul;35(28):e2205814. doi: 10.1002/adma.202205814. Epub 2023 Jun 7.

Abstract

Sluggish reaction kinetics and the undesired side reactions (hydrogen evolution reaction and self-reduction) are the main bottlenecks of electrochemical conversion reactions, such as the carbon dioxide and nitrate reduction reactions (CO RR and NO RR). To date, conventional strategies to overcome these challenges involve electronic structure modification and modulation of the charge-transfer behavior. Nonetheless, key aspects of surface modification, focused on boosting the intrinsic activity of active sites on the catalyst surface, are yet to be fully understood. Engingeering of oxygen vacancies (OVs) can tune surface/bulk electronic structure and improve surface active sites of electrocatalysts. The continuous breakthroughs and significant progress in the last decade position engineering of OVs as a potential technique for advancing electrocatalysis. Motivated by this, the state-of-the-art findings of the roles of OVs in both the CO RR and the NO RR are presented. The review starts with a description of approaches to constructing and techniques for characterizing OVs. This is followed by an overview of the mechanistic understanding of the CO RR and a detailed discussion on the roles of OVs in the CO RR. Then, insights into the NO RR mechanism and the potential of OVs on NO RR based on early findings are highlighted. Finally, the challenges in designing CO RR/NO RR electrocatalysts and perspectives in studying OV engineering are provided.

摘要

动力学反应缓慢和不期望的副反应(析氢反应和自还原)是电化学转化反应(如二氧化碳和硝酸盐还原反应(CO RR 和 NO RR))的主要瓶颈。迄今为止,克服这些挑战的传统策略包括电子结构修饰和电荷转移行为的调制。然而,表面修饰的关键方面,重点是提高催化剂表面活性位点的本征活性,仍有待充分理解。氧空位(OVs)的工程可以调整表面/体电子结构并改善电催化剂的表面活性位点。过去十年的连续突破和重大进展将 OVs 的工程定位为推进电催化的潜在技术。受此启发,本文介绍了 OVs 在 CO RR 和 NO RR 中的作用的最新发现。综述首先描述了构建 OVs 的方法和表征技术。接着概述了 CO RR 的机理理解,并详细讨论了 OVs 在 CO RR 中的作用。然后,根据早期的发现,介绍了对 NO RR 机制和 OVs 在 NO RR 上的潜力的见解。最后,提出了设计 CO RR/NO RR 电催化剂的挑战和研究 OV 工程的展望。

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