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用于能量存储和转换的原子/分子层沉积

Atomic/molecular layer deposition for energy storage and conversion.

作者信息

Zhao Yang, Zhang Lei, Liu Jian, Adair Keegan, Zhao Feipeng, Sun Yipeng, Wu Tianpin, Bi Xuanxuan, Amine Khalil, Lu Jun, Sun Xueliang

机构信息

Department of Mechanical & Materials Engineering, University of Western Ontario, London, ON N6A 5B9, Canada.

出版信息

Chem Soc Rev. 2021 Mar 21;50(6):3889-3956. doi: 10.1039/d0cs00156b. Epub 2021 Feb 1.

Abstract

Energy storage and conversion systems, including batteries, supercapacitors, fuel cells, solar cells, and photoelectrochemical water splitting, have played vital roles in the reduction of fossil fuel usage, addressing environmental issues and the development of electric vehicles. The fabrication and surface/interface engineering of electrode materials with refined structures are indispensable for achieving optimal performances for the different energy-related devices. Atomic layer deposition (ALD) and molecular layer deposition (MLD) techniques, the gas-phase thin film deposition processes with self-limiting and saturated surface reactions, have emerged as powerful techniques for surface and interface engineering in energy-related devices due to their exceptional capability of precise thickness control, excellent uniformity and conformity, tunable composition and relatively low deposition temperature. In the past few decades, ALD and MLD have been intensively studied for energy storage and conversion applications with remarkable progress. In this review, we give a comprehensive summary of the development and achievements of ALD and MLD and their applications for energy storage and conversion, including batteries, supercapacitors, fuel cells, solar cells, and photoelectrochemical water splitting. Moreover, the fundamental understanding of the mechanisms involved in different devices will be deeply reviewed. Furthermore, the large-scale potential of ALD and MLD techniques is discussed and predicted. Finally, we will provide insightful perspectives on future directions for new material design by ALD and MLD and untapped opportunities in energy storage and conversion.

摘要

能量存储与转换系统,包括电池、超级电容器、燃料电池、太阳能电池以及光电化学水分解,在减少化石燃料使用、解决环境问题以及电动汽车发展方面发挥了至关重要的作用。具有精细结构的电极材料的制备及其表面/界面工程对于实现不同能量相关器件的最佳性能不可或缺。原子层沉积(ALD)和分子层沉积(MLD)技术是具有自限性和饱和表面反应的气相薄膜沉积工艺,由于其精确的厚度控制能力、出色的均匀性和一致性、可调节的成分以及相对较低的沉积温度,已成为能量相关器件表面和界面工程的强大技术。在过去几十年中,ALD和MLD在能量存储与转换应用方面得到了深入研究,并取得了显著进展。在本综述中,我们全面总结了ALD和MLD的发展与成就及其在能量存储与转换方面的应用,包括电池、超级电容器、燃料电池、太阳能电池以及光电化学水分解。此外,还将深入探讨对不同器件所涉及机制的基本理解。此外,还讨论并预测了ALD和MLD技术的大规模应用潜力。最后,我们将对ALD和MLD新材料设计的未来方向以及能量存储与转换中未开发的机会提供有见地的观点。

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