Guangmin Zhou;锋 李;会明 成
CAS - Institute of Metal Research;China Association for Science and Technology
发表时间:2014-4
期 刊:Energy and Environmental Science
语 言:English
U R L: http://www.scopus.com/inward/record.url?scp=84896910340&partnerID=8YFLogxK
With the advent of flexible electronics, flexible lithium-ion batteries have attracted great attention as a promising power source in the emerging field of flexible and wearable electronic devices such as roll-up displays, touch screens, conformable active radio-frequency identification tags, wearable sensors and implantable medical devices. In this review, we summarize the recent research progress of flexible lithium-ion batteries, with special emphasis on electrode material selectivity and battery structural design. We begin with a brief introduction of flexible lithium-ion batteries and the current development of flexible solid-state electrolytes for applications in this field. This is followed by a detailed overview of the recent progress on flexible electrode materials based on carbon nanotubes, graphene, carbon cloth, conductive paper (cellulose), textiles and some other low-dimensional nanostructured materials. Then recently proposed prototypes of flexible cable/wire type, transparent and stretchable lithium-ion batteries are highlighted. The latest advances in the exploration of other flexible battery systems such as lithium-sulfur, Zn-C (MnO2) and sodium-ion batteries, as well as related electrode materials are included. Finally, the prospects and challenges toward the practical uses of flexible lithium-ion batteries in electronic devices are discussed. This journal is
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2009 | 2.111 | 1.166 | |
2010 | 3.87 | 2.429 | |
2011 | 7.9 | 3.737 | 2.507 |
2012 | 13.3 | 5.868 | 2.578 |
2013 | 21.1 | 6.019 | 2.982 |
2014 | 32.2 | 7.769 | 3.989 |
2015 | 39.9 | 9.783 | 4.177 |
2016 | 46.1 | 12.283 | 4.324 |
2017 | 57.3 | 14.59 | 4.805 |
2018 | 54.2 | 13.103 | 4.693 |
2019 | 56 | 13.024 | 4.706 |
2020 | 52.7 |
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