Two-dimensional materials for electrochromic applications

IF 22.2 Q1 CHEMISTRY, MULTIDISCIPLINARY EnergyChem Pub Date : 2021-09-01 DOI:10.1016/j.enchem.2021.100060
Jianmin Li , Yanling Zhuang , Jianmei Chen , Bingxiang Li , Longlu Wang , Shujuan Liu , Qiang Zhao
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引用次数: 17

Abstract

Electrochromic devices (ECDs), which generate reversible color changes by the electrochemical reaction, have shown tremendous promise in the field of smart windows, displays, and the future wearable electronics, due to their benefits of simple structure, low power consumption, as well as multi-colors. In the past decade, two-dimensional (2D) materials, such as graphene, metal oxides/carbides/nitrides/dichalcogenides, conductive polymer, metal-organic frameworks, and covalent organic frameworks, that represent good mechanical properties, superior electrochemical activity, fast charge transfer speed, and other unique physical properties, have been widely applied in the ECDs and induced great improvement of the field. As a result, some long-playing issues of ECDs are in prospect to be settled by using 2D materials. This review starts from summarizing the evaluation standard of ECDs, followed by highlighting the most up-to-date exciting results regarding the design and application of 2D materials for the electrochromic layer. Meanwhile, the superior effects of graphene and MXenes for advanced flexible transparent conducting layer are discussed in detail. At last, the remaining challenges and possible research directions for the future of this field are also proposed. Hopefully, the review may shed light on the main trends for developing high-performance ECDs, and provide referencing value for other researchers, to and finally boost the practical applications of ECDs.

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用于电致变色的二维材料
电致变色器件(ECDs)是一种通过电化学反应产生可逆颜色变化的器件,由于其结构简单、功耗低、多色等优点,在智能窗口、显示器和未来可穿戴电子产品领域显示出巨大的前景。近十年来,石墨烯、金属氧化物/碳化物/氮化物/二硫族化物、导电聚合物、金属-有机骨架、共价有机骨架等二维材料以其良好的力学性能、优异的电化学活性、快速的电荷转移速度等独特的物理性能被广泛应用于ECDs中,并引起了该领域的巨大进步。因此,使用二维材料有望解决ecd的一些长期存在的问题。本文首先概述了电致变色层二维材料的评价标准,然后重点介绍了电致变色层二维材料设计和应用的最新研究成果。同时,详细讨论了石墨烯和MXenes在先进柔性透明导电层中的优越效果。最后,提出了该领域存在的挑战和未来可能的研究方向。希望通过本文的综述,能够揭示高性能ECDs的主要发展趋势,为其他研究人员提供参考价值,从而促进ECDs的实际应用。
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来源期刊
EnergyChem
EnergyChem Multiple-
CiteScore
40.80
自引率
2.80%
发文量
23
审稿时长
40 days
期刊介绍: EnergyChem, a reputable journal, focuses on publishing high-quality research and review articles within the realm of chemistry, chemical engineering, and materials science with a specific emphasis on energy applications. The priority areas covered by the journal include:Solar energy,Energy harvesting devices,Fuel cells,Hydrogen energy,Bioenergy and biofuels,Batteries,Supercapacitors,Electrocatalysis and photocatalysis,Energy storage and energy conversion,Carbon capture and storage
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