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Electrode materials and device architecture strategies for flexible supercapacitors in wearable energy storage

机译:可穿戴储能器中灵活超级电容器的电极材料和装置架构策略

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摘要

Flexible supercapacitors (FSCs) are promising energy storage devices in wearable electronic systems. They have attracted tremendous attention owing to their unique properties of excellent flexibility, fast charging and discharging capabilities, and durable service life. Herein, the recent developments of electrode materials and device structures of FSCs are introduced in detail. Based on the energy storage mechanisms, the characteristics and research progress of electrode materials, such as carbon materials, transition metal oxides/hydroxides, conductive polymers, and MXenes, are classified and analyzed. The improvement strategy of these materials is emphasized. In recent years, the numerous novel architectures of FSCs have been established for better wearable applications. Thus, this review summarizes the latest progress in the planar, fibrous, and stereo architectures of FSCs in wearable electronics. The influence of the substrate, electrolyte, and structure design on the performance of FSCs is discussed. Finally, the challenges and prospects of FSCs in wearable electronic products and the future development direction are prospected.
机译:柔性超级电容器(FSC)是可穿戴电子系统中很有前途的储能装置。它们以其优异的柔韧性、快速的充放电能力和耐用的使用寿命而备受关注。本文详细介绍了FSCs电极材料和器件结构的最新进展。从储能机理出发,对碳材料、过渡金属氧化物/氢氧化物、导电聚合物和MXenes等电极材料的特性和研究进展进行了分类和分析。重点介绍了这些材料的改进策略。近年来,为了更好的可穿戴应用,已经建立了许多新型FSC体系结构。因此,本文综述了可穿戴电子设备中FSC平面、纤维和立体结构的最新进展。讨论了基底、电解质和结构设计对FSCs性能的影响。最后,展望了FSC在可穿戴电子产品中面临的挑战和前景以及未来的发展方向。

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