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Tab engineering-mediated resistance of flexible lithium-ion batteries for high output current 被引量:2
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作者 Shi Kui Jia Bin Ze yang +5 位作者 Chao Feng Zhao Zhi Yong Zhang yan hong yin Xian Bin Liu ying yan Hu Zi Ping Wu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第7期264-270,共7页
Flexible lithium-ion batteries(LIBs) have received tremendous interest because they can provide essential flexible power for the emerging wearable electronics.However,the realization of the flexibility of LIBs is ofte... Flexible lithium-ion batteries(LIBs) have received tremendous interest because they can provide essential flexible power for the emerging wearable electronics.However,the realization of the flexibility of LIBs is often related to flexible substrates with high electrical resistance,which results in voltage loss of the battery and is unfavorable for their practical applications.In this work,we demonstrated the use of tab engineering to mediate the resistance of flexible batteries for high current output.The resistance of the obtained pouch cell can be decreased sharply and the output current can be significantly increased by a continuous tab with desirable power and energy density.The surprising performance of the flexible LIBs allows the tab on the current collector providing enough channels for electron transfer,thus enabling electrons to be transferred quickly and enhancing the electrochemical reaction kinetics.Such a flexible battery with sufficient output current could possibly solve some of the most critical problems for their practical applications in wearable electronics. 展开更多
关键词 Flexible batteries Tabs Current Carbon nanotube Wearable electronics
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