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Flexible electrochemical energy storage devices and related applications: recent progress and challenges.
Xiao, Bo-Hao; Xiao, Kang; Li, Jian-Xi; Xiao, Can-Fei; Cao, Shunsheng; Liu, Zhao-Qing.
Afiliação
  • Xiao BH; School of Chemistry and Chemical Engineering/Institute of Clean Energy and Materials/Key Laboratory for Clean Energy and Materials, Guangzhou University Guangzhou 510006 China kxiao@gzhu.edu.cn lzqgzu@gzhu.edu.cn.
  • Xiao K; School of Materials Science & Engineering, Jiangsu University Zhenjiang 212013 China sscao@ujs.edu.cn.
  • Li JX; School of Chemistry and Chemical Engineering/Institute of Clean Energy and Materials/Key Laboratory for Clean Energy and Materials, Guangzhou University Guangzhou 510006 China kxiao@gzhu.edu.cn lzqgzu@gzhu.edu.cn.
  • Xiao CF; School of Chemistry and Chemical Engineering/Institute of Clean Energy and Materials/Key Laboratory for Clean Energy and Materials, Guangzhou University Guangzhou 510006 China kxiao@gzhu.edu.cn lzqgzu@gzhu.edu.cn.
  • Cao S; School of Chemistry and Chemical Engineering/Institute of Clean Energy and Materials/Key Laboratory for Clean Energy and Materials, Guangzhou University Guangzhou 510006 China kxiao@gzhu.edu.cn lzqgzu@gzhu.edu.cn.
  • Liu ZQ; School of Materials Science & Engineering, Jiangsu University Zhenjiang 212013 China sscao@ujs.edu.cn.
Chem Sci ; 15(29): 11229-11266, 2024 Jul 24.
Article em En | MEDLINE | ID: mdl-39055032
ABSTRACT
Given the escalating demand for wearable electronics, there is an urgent need to explore cost-effective and environmentally friendly flexible energy storage devices with exceptional electrochemical properties. However, the existing types of flexible energy storage devices encounter challenges in effectively integrating mechanical and electrochemical performances. This review is intended to provide strategies for the design of components in flexible energy storage devices (electrode materials, gel electrolytes, and separators) with the aim of developing energy storage systems with excellent performance and deformability. Firstly, a concise overview is provided on the structural characteristics and properties of carbon-based materials and conductive polymer materials utilized in flexible energy storage devices. Secondly, the fabrication process and strategies for optimizing their structures are summarized. Subsequently, a comprehensive review is presented regarding the applications of carbon-based materials and conductive polymer materials in various fields of flexible energy storage, such as supercapacitors, lithium-ion batteries, and zinc-ion batteries. Finally, the challenges and future directions for next-generation flexible energy storage systems are proposed.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Chem Sci Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Chem Sci Ano de publicação: 2024 Tipo de documento: Article