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Configuration-dependent stretchable all-solid-state supercapacitors and hybrid supercapacitors

作     者:Ahmad Amiri Ashley Bruno Andreas A.Polycarpou Ahmad Amiri;Ashley Bruno;Andreas A.Polycarpou

作者机构:J.Mike Walker’66 Mechanical Engineering DepartmentTexas A&M UniversityCollege StationTexasUSA 

出 版 物:《Carbon Energy》 (碳能源(英文))

年 卷 期:2023年第5卷第5期

页      面:1-47页

核心收录:

学科分类:0820[工学-石油与天然气工程] 080801[工学-电机与电器] 0808[工学-电气工程] 08[工学] 0805[工学-材料科学与工程(可授工学、理学学位)] 0703[理学-化学] 

基  金:Texas A and M University  TAMU 

主  题:1D fiber-like SCs 2D planar supercapacitors 3D sponge and textile structures flexible/stretchable supercapacitors kirigami/origami-inspired structures 

摘      要:Given the rise in the popularity of wearable electronics that are able to deform into desirable configurations while maintaining electrochemical functionality,stretchable and flexible(hybrid)supercapacitors(SCs)have become increasingly of interest as innovative energy storage devices.Their outstanding power density,long lifetime with low capacitance loss,and appropriate energy density,in particular in hybrid cases make them ideal candidates for flexible electronics.The aim of this review paper is to provide an in-depth discussion of these stretchable and flexible SCs ranging from fabrication to electro-mechanical properties.This review paper begins with a short overview of the fundamentals of charge storage mechanisms and different types of multivalent metal-ion hybrid SCs.The research methods leading up to the current state of these stretchable and flexible SCs are then presented.This is followed by an in-depth presentation of the challenges associated with the fabrication methods for different configurations.Proposed novel strategies to maximize the elastic and electrochemical properties of stretchable/flexible or quasi-solid-state SCs are classified and the pros and cons associated with each are shown.The advances in mechanical properties and the expected advancements for the future of these SCs are discussed in the last section.

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