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用于析氧电极的(氢)氧化物的电沉积

Electrodeposition of (hydro)oxides for an oxygen evolution electrode.

作者信息

Yan Zhenhua, Liu Huanhuan, Hao Zhimeng, Yu Meng, Chen Xiang, Chen Jun

机构信息

Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), Renewable Energy Conversion and Storage Center, College of Chemistry, Nankai University Tianjin 300071 China

出版信息

Chem Sci. 2020 Apr 20;11(39):10614-10625. doi: 10.1039/d0sc01532f.

Abstract

Electrochemical water splitting is a promising technology for hydrogen production and sustainable energy conversion, but the electrolyzers that are currently available do not have anodic electrodes that are robust enough and highly active for the oxygen evolution reaction (OER). Electrodeposition provides a feasible route for preparing freestanding OER electrodes with high active site utilization, fast mass transport and a simple fabrication process, which is highly attractive from both academic and commercial points of view. This minireview focuses on the recent electrodeposition strategies for metal (hydro)oxide design and water oxidation applications. First, the intrinsic advantages of electrodeposition in comparison with traditional technologies are introduced. Then, the unique properties and underlying principles of electrodeposited metal (hydro)oxides in the OER are unveiled. In parallel, illustrative examples of the latest advances in materials structural design, controllable synthesis, and mechanism understanding through the electrochemical synthesis of (hydro)oxides are presented. Finally, the latest representative OER mechanism and electrodeposition routes for OER catalysts are briefly overviewed. Such observations provide new insights into freestanding (hydro)oxides electrodes prepared electrodeposition, which show significant practical application potential in water splitting devices. We hope that this review will provide inspiration for researchers and stimulate the development of water splitting technology.

摘要

电化学水分解是一种很有前景的制氢和可持续能源转换技术,但目前可用的电解槽没有足够坚固且对析氧反应(OER)具有高活性的阳极电极。电沉积为制备具有高活性位点利用率、快速传质和简单制造工艺的独立式OER电极提供了一条可行的途径,从学术和商业角度来看都极具吸引力。本综述聚焦于近期金属(氢)氧化物设计和水氧化应用的电沉积策略。首先,介绍了电沉积相较于传统技术的内在优势。然后,揭示了电沉积金属(氢)氧化物在OER中的独特性质和基本原理。同时,展示了通过(氢)氧化物的电化学合成在材料结构设计、可控合成和机理理解方面最新进展的示例。最后,简要概述了最新的代表性OER机理和OER催化剂的电沉积路线。这些观察为通过电沉积制备的独立式(氢)氧化物电极提供了新的见解,其在水分解装置中显示出显著的实际应用潜力。我们希望本综述能为研究人员提供灵感并推动水分解技术的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a733/8162381/87741661f739/d0sc01532f-f1.jpg

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