Functional gel materials for next-generation electrochromic devices and applications

IF 39 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chemical Society Reviews Pub Date : 2025-02-28 DOI:10.1039/D4CS01256A
Yuyang Wang, Xiaoyan Sun, Quanbing Liu and Guihua Yu
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Abstract

Flexible, wearable, bistable displays, visualized energy storage devices and large-area smart windows based on electrochromic (EC) technology are regarded as promising next-generation sustainable display technologies, with the potential to improve people's lives by enabling low-energy consumption, vision-friendly, smart display, and energy-efficient building solutions. Recently, gel-based EC devices have gained considerable research interest and have emerged as an effective platform for EC applications due to their unique and enhanced properties. Compared to solid-state and liquid-state EC devices, gel-based EC systems offer superior processability and scalability, improved mechanical properties such as flexibility and stretchability, and high ionic conductivity without leakage or volatility issues. This review summarizes and analyzes the gelation chemistry in EC systems, focusing on their relationship with key EC properties of the device. Ionic conductivity, temperature adaptability, and mechanical characteristics of the gels such as stretchability, self-healing ability, flexibility, and viscosity are foundational for enabling diverse functional EC applications. We introduce the preparation methods of related gels for EC devices and then discuss the factors influencing the properties and the strategies for tuning them, including the control of morphology, network architecture, polymer skeletons, functional groups, and additives within ion gels. Representative and latest applications of gel-based electrolytes in EC devices for various promising displays were then presented. Finally, we critically analyze the remaining challenges that need to be addressed to enable the practical deployment of gel-based EC devices and offer more insights into future directions for advancing EC technologies.

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新一代电致变色器件及其应用的功能凝胶材料。
柔性、可穿戴、双稳态显示、可视化储能设备和基于电致变色(EC)技术的大面积智能窗户被认为是有前途的下一代可持续显示技术,具有通过实现低能耗、视觉友好、智能显示和节能建筑解决方案来改善人们生活的潜力。近年来,凝胶基EC装置因其独特和增强的性能而获得了相当大的研究兴趣,并成为EC应用的有效平台。与固态和液态EC设备相比,凝胶型EC系统具有卓越的可加工性和可扩展性,改进的机械性能,如柔韧性和拉伸性,以及高离子导电性,而不会泄漏或挥发性问题。本文综述和分析了EC体系中的凝胶化学,重点介绍了它们与装置关键EC性能的关系。离子电导率、温度适应性和凝胶的机械特性,如拉伸性、自愈性、柔韧性和粘度,是实现各种功能EC应用的基础。本文介绍了电导器件相关凝胶的制备方法,并讨论了影响电导器件性能的因素和调整策略,包括离子凝胶中形态、网络结构、聚合物骨架、官能团和添加剂的控制。然后介绍了凝胶基电解质在各种有前途的显示电子器件中的代表性和最新应用。最后,我们批判性地分析了需要解决的剩余挑战,以实现凝胶基EC设备的实际部署,并为推进EC技术的未来方向提供更多见解。
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来源期刊
Chemical Society Reviews
Chemical Society Reviews 化学-化学综合
CiteScore
80.80
自引率
1.10%
发文量
345
审稿时长
6.0 months
期刊介绍: Chemical Society Reviews is published by: Royal Society of Chemistry. Focus: Review articles on topics of current interest in chemistry; Predecessors: Quarterly Reviews, Chemical Society (1947–1971); Current title: Since 1971; Impact factor: 60.615 (2021); Themed issues: Occasional themed issues on new and emerging areas of research in the chemical sciences
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Correction: A practical guide to pulsed laser deposition. Surface-initiated living crystallization-driven self-assembly: from precision nanofabrication to functional interfaces. Machine learning-driven molecular engineering of nucleic acids. Optical probes of hot carriers in halide perovskites. Photo-responsive chemical systems enabling multiscale structural ordering.
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