Issue 23, 2016

Smart, stretchable and wearable supercapacitors: prospects and challenges

Abstract

Among the various energy storage systems, supercapacitors are considered to be the most promising alternative to batteries due to their high power density, long cycle life and fast charge–discharge process. Especially, flexible electrochemical supercapacitors with their unique advantages such as flexibility, shape-conformability, and light weight are attracting ever-increasing attention to meet the current requirements for portable and wearable electric devices in modern energy storage markets. In this perspective, we summarize the most recent progress in flexible all-solid supercapacitors from the point of view of flexible electrode materials. Various flexible electrode materials like carbon nanotubes, graphene, and pseudo capacitive materials are discussed and their performance is comprehensively analyzed. In addition, an overview of the latest progress in strategies to improve the energy and power density is discussed. Further research targets in multifunctional integrated systems and challenges in realizing idealized flexible energy storage systems are also proposed.

Graphical abstract: Smart, stretchable and wearable supercapacitors: prospects and challenges

Article information

Article type
Highlight
Submitted
21 Dec. 2015
Accepted
05 Febr. 2016
First published
05 Febr. 2016

CrystEngComm, 2016,18, 4218-4235

Smart, stretchable and wearable supercapacitors: prospects and challenges

Y. Zheng, Y. Yang, S. Chen and Q. Yuan, CrystEngComm, 2016, 18, 4218 DOI: 10.1039/C5CE02510A

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