Recent developments of advanced micro-supercapacitors: design, fabrication and applications
Abstract The rapid development of wearable, highly integrated, and flexible electronics has stimulated great demand for on-chip and miniaturized energy storage devices. By virtue of their high power density and long cycle life, micro-supercapacitors (MSCs), especially those with interdigital structu...
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Nature Portfolio
2020
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oai:doaj.org-article:2cff5aec1e31428ba2fec044f316d9552021-12-02T13:43:49ZRecent developments of advanced micro-supercapacitors: design, fabrication and applications10.1038/s41528-020-00093-62397-4621https://doaj.org/article/2cff5aec1e31428ba2fec044f316d9552020-11-01T00:00:00Zhttps://doi.org/10.1038/s41528-020-00093-6https://doaj.org/toc/2397-4621Abstract The rapid development of wearable, highly integrated, and flexible electronics has stimulated great demand for on-chip and miniaturized energy storage devices. By virtue of their high power density and long cycle life, micro-supercapacitors (MSCs), especially those with interdigital structures, have attracted considerable attention. In recent years, tremendous theoretical and experimental explorations have been carried out on the structures and electrode materials of MSCs, aiming to obtain better mechanical and electrochemical properties. The high-performance MSCs can be used in many fields, such as energy storage and medical assistant examination. Here, this review focuses on the recent progress of advanced MSCs in fabrication strategies, structural design, electrode materials design and function, and integrated applications, where typical examples are highlighted and analyzed. Furthermore, the current challenges and future development directions of advanced MSCs are also discussed.Fan BuWeiwei ZhouYihan XuYu DuCao GuanWei HuangNature PortfolioarticleElectronicsTK7800-8360Materials of engineering and construction. Mechanics of materialsTA401-492ENnpj Flexible Electronics, Vol 4, Iss 1, Pp 1-16 (2020) |
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Electronics TK7800-8360 Materials of engineering and construction. Mechanics of materials TA401-492 Fan Bu Weiwei Zhou Yihan Xu Yu Du Cao Guan Wei Huang Recent developments of advanced micro-supercapacitors: design, fabrication and applications |
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Abstract The rapid development of wearable, highly integrated, and flexible electronics has stimulated great demand for on-chip and miniaturized energy storage devices. By virtue of their high power density and long cycle life, micro-supercapacitors (MSCs), especially those with interdigital structures, have attracted considerable attention. In recent years, tremendous theoretical and experimental explorations have been carried out on the structures and electrode materials of MSCs, aiming to obtain better mechanical and electrochemical properties. The high-performance MSCs can be used in many fields, such as energy storage and medical assistant examination. Here, this review focuses on the recent progress of advanced MSCs in fabrication strategies, structural design, electrode materials design and function, and integrated applications, where typical examples are highlighted and analyzed. Furthermore, the current challenges and future development directions of advanced MSCs are also discussed. |
format |
article |
author |
Fan Bu Weiwei Zhou Yihan Xu Yu Du Cao Guan Wei Huang |
author_facet |
Fan Bu Weiwei Zhou Yihan Xu Yu Du Cao Guan Wei Huang |
author_sort |
Fan Bu |
title |
Recent developments of advanced micro-supercapacitors: design, fabrication and applications |
title_short |
Recent developments of advanced micro-supercapacitors: design, fabrication and applications |
title_full |
Recent developments of advanced micro-supercapacitors: design, fabrication and applications |
title_fullStr |
Recent developments of advanced micro-supercapacitors: design, fabrication and applications |
title_full_unstemmed |
Recent developments of advanced micro-supercapacitors: design, fabrication and applications |
title_sort |
recent developments of advanced micro-supercapacitors: design, fabrication and applications |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/2cff5aec1e31428ba2fec044f316d955 |
work_keys_str_mv |
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_version_ |
1718392545952661504 |