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柔性/可拉伸超级电容器在可穿戴电子设备中的最新进展。

Recent Advances in Flexible/Stretchable Supercapacitors for Wearable Electronics.

机构信息

State Key Laboratory for Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences, Beijing, 100083, China.

Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education), Jilin University, Changchun, 130012, P. R. China.

出版信息

Small. 2018 Oct;14(43):e1702829. doi: 10.1002/smll.201702829. Epub 2017 Nov 22.

Abstract

The popularization of personalized wearable devices has accelerated the development of flexible/stretchable supercapacitors (SCs) that possess remarkable features of miniaturization, high security, and easy integration to build an all-in-one integrated system, and realize the functions of comfortable, noninvasive and continuous health monitoring, motion records, and information acquisition, etc. This Review presents a brief phylogeny of flexible/stretchable SCs, represented by planar micro-supercapacitors (MSCs) and 1D fibrous SCs. The latest progress and advantages of different flexible/stretchable/self-healing substrate, solid-state electrolyte and electrode materials for the fabrication of wearable SCs devices are summarized. The various configurations used in planar MSCs and 1D fibrous SCs aiming at the improvement of performance are also discussed. In addition, from the viewpoint of practical value and large-scale production, a survey of integrated systems, from different types of SC powered wearable sensing (gas, pressure, tactile…) systems, wearable all-in-one systems (including energy harvest, storage, and functional groups), to device packaging is presented. Finally, the challenges and future perspectives of wearable SCs are also considered.

摘要

个性化可穿戴设备的普及加速了柔性/拉伸超级电容器(SCs)的发展,这些超级电容器具有小型化、高安全性和易于集成的特点,可构建一体式集成系统,并实现舒适、非侵入式和连续的健康监测、运动记录和信息采集等功能。本文简要介绍了柔性/拉伸超级电容器的发展历程,以平面微超级电容器(MSCs)和 1D 纤维状超级电容器为代表。总结了不同柔性/拉伸/自修复基底、固态电解质和电极材料在可穿戴超级电容器器件制造方面的最新进展和优势。还讨论了用于提高性能的平面 MSCs 和 1D 纤维状 SC 的各种配置。此外,从实用价值和大规模生产的角度出发,对不同类型的 SC 供电可穿戴传感(气体、压力、触觉……)系统、可穿戴一体式系统(包括能量收集、存储和功能组)以及器件封装的集成系统进行了综述。最后,还考虑了可穿戴超级电容器面临的挑战和未来展望。

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