Flexible wearable energy storage devices: Materials, structures, and applications

Author:

Zhang Qi1ORCID,Gao Xuan‐Wen2,Liu Xiao1,Mu Jian‐Jia2,Gu Qinfen3,Liu Zhaomeng2,Luo Wen‐Bin2ORCID

Affiliation:

1. Engineering Research Centre of Advanced Metal Composites Forming Technology and Equipment, Ministry of Education Taiyuan University of Technology Taiyuan China

2. Institute for Energy Electrochemistry and Urban Mines Metallurgy, School of Metallurgy Northeastern University Shenyang China

3. Australian Synchrotron (ANSTO) Victoria Australia

Abstract

AbstractWearable electronics are expected to be light, durable, flexible, and comfortable. Many fibrous, planar, and tridimensional structures have been designed to realize flexible devices that can sustain geometrical deformations, such as bending, twisting, folding, and stretching normally under the premise of relatively good electrochemical performance and mechanical stability. As a flexible electrode for batteries or other devices, it possesses favorable mechanical strength and large specific capacity and preserves efficient ionic and electronic conductivity with a certain shape, structure, and function. To fulfill flexible energy‐storage devices, much effort has been devoted to the design of structures and materials with mechanical characteristics. This review attempts to critically review the state of the art with respect to materials of electrodes and electrolyte, the device structure, and the corresponding fabrication techniques as well as applications of the flexible energy storage devices. Finally, the limitations of materials and preparation methods, the functions, and the working conditions of devices in the future were discussed and presented.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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