基于导电聚合物的先进电致变色储能设备

IF 6.4 3区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Xiaoyang Chen, Qifan Liu, Lukuan Cheng, Shiqiang Zhou, Lina Chen, Guojin Liang, Jun Wei, Funian Mo
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引用次数: 0

摘要

随着人们对多功能光电设备需求的增加,电致变色和储能功能的整合成为电致变色设备领域的前沿技术。基于导电聚合物的电致变色储能器件(EESDs)领域是一个充满活力的领域,其特点是研究和开发正在进行中。尽管有大量研究文章对这一领域的各个方面进行了探讨,但系统地研究这些系统的进步、挑战和内在潜力的全面综述却明显不足。为了填补这一空白,本综述系统地概述了以导电共轭聚合物(CPs)为中心的 EESD 的最新进展。综述首先深入探讨了支撑 EESD 的基本原理,包括其运行机制、器件配置和具有代表性的关键性能指标。此外,综述还对各种导电聚合物进行了分类,阐明了利用这些特定 CP 变体进行 EESD 研究的最新进展。深入分析的重点是它们在形成电致变色储能设备方面的合作作用。总之,这篇综述将吸引研究人员对基于 CP 的最先进 EESD 的兴趣,并将这些先驱技术确立为定义可穿戴电子设备、便携式设备和先进储能系统未来格局的关键竞争者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Advanced Electrochromic Energy Storage Devices Based on Conductive Polymers

Advanced Electrochromic Energy Storage Devices Based on Conductive Polymers

Advanced Electrochromic Energy Storage Devices Based on Conductive Polymers

As the demand for multifunctional optoelectronic devices rises, the integration of electrochromic and energy storage functionalities represents a cutting-edge pursuit in the electrochromic devices domain. The realm of conductive polymer-based electrochromic energy storage devices (EESDs) stands as a vibrant area marked by ongoing research and development. Despite a plethora of individual research articles exploring various facets within this domain, there exists a conspicuous dearth of comprehensive reviews systematically scrutinizing the advancements, challenges, and potentials intrinsic to these systems. To fill this void, this review systematically outlines the latest progressions in EESDs centered on conductive conjugated polymers (CPs). The review commences with a thorough exploration of the foundational principles underpinning EESDs, encompassing their operational mechanisms, device configurations, and representative key performance indicators. Furthermore, the review categorizes diverse conductive polymers, shedding light on the latest advancements in EESD research utilizing these specific CP variants. This in-depth analysis centers on their collaborative role in shaping electrochromic energy storage devices. Overall, this review is poised to captivate the interest of researchers toward state-of-the-art CP-based EESDs, establishing these pioneering technologies as pivotal contenders in defining the forthcoming landscape of wearable electronics, portable devices, and advanced energy storage systems.

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来源期刊
Advanced Materials Technologies
Advanced Materials Technologies Materials Science-General Materials Science
CiteScore
10.20
自引率
4.40%
发文量
566
期刊介绍: Advanced Materials Technologies Advanced Materials Technologies is the new home for all technology-related materials applications research, with particular focus on advanced device design, fabrication and integration, as well as new technologies based on novel materials. It bridges the gap between fundamental laboratory research and industry.
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