Self-protection of electrochemical storage devices via a thermal reversible sol-gel transition
Thermal self-protected intelligent electrochemical storage devices are fabricated using a reversible sol–gel transition of the electrolyte, which can decrease the specific capacitance and increase and enable temperature-dependent charging and discharging rates in the device. This work represents pro...
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sg-ntu-dr.10356-805152020-06-01T10:21:28Z Self-protection of electrochemical storage devices via a thermal reversible sol-gel transition Yang, Hui Liu, Zhiyuan Deng, Jiyang Yu, Jiancan Qi, Dianpeng Li, Wenlong Tang, Yuxin Zhang, Chenguang Chen, Xiaodong Chandran, Bevita Kallupalathinkal School of Materials Science & Engineering electrochemical storage devices self-protection sol–gel transition thermal runaway Thermal self-protected intelligent electrochemical storage devices are fabricated using a reversible sol–gel transition of the electrolyte, which can decrease the specific capacitance and increase and enable temperature-dependent charging and discharging rates in the device. This work represents proof of a simple and useful concept, which shows tremendous promise for the safe and controlled power delivery in electrochemical devices. NRF (Natl Research Foundation, S’pore) 2016-06-01T02:30:23Z 2019-12-06T13:51:14Z 2016-06-01T02:30:23Z 2019-12-06T13:51:14Z 2015 2015 Journal Article Yang, H., Liu, Z., Chandran, B. K., Deng, J., Yu, J., & Qi, D., et al. (2015). Self-Protection of Electrochemical Storage Devices via a Thermal Reversible Sol–Gel Transition. Advanced Materials, 27(37), 5593-5598. 0935-9648 https://hdl.handle.net/10356/80515 http://hdl.handle.net/10220/40590 10.1002/adma.201502484 192556 en Advanced Materials © 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. |
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electrochemical storage devices self-protection sol–gel transition thermal runaway |
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electrochemical storage devices self-protection sol–gel transition thermal runaway Yang, Hui Liu, Zhiyuan Deng, Jiyang Yu, Jiancan Qi, Dianpeng Li, Wenlong Tang, Yuxin Zhang, Chenguang Chen, Xiaodong Chandran, Bevita Kallupalathinkal Self-protection of electrochemical storage devices via a thermal reversible sol-gel transition |
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Thermal self-protected intelligent electrochemical storage devices are fabricated using a reversible sol–gel transition of the electrolyte, which can decrease the specific capacitance and increase and enable temperature-dependent charging and discharging rates in the device. This work represents proof of a simple and useful concept, which shows tremendous promise for the safe and controlled power delivery in electrochemical devices. |
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School of Materials Science & Engineering |
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School of Materials Science & Engineering Yang, Hui Liu, Zhiyuan Deng, Jiyang Yu, Jiancan Qi, Dianpeng Li, Wenlong Tang, Yuxin Zhang, Chenguang Chen, Xiaodong Chandran, Bevita Kallupalathinkal |
format |
Article |
author |
Yang, Hui Liu, Zhiyuan Deng, Jiyang Yu, Jiancan Qi, Dianpeng Li, Wenlong Tang, Yuxin Zhang, Chenguang Chen, Xiaodong Chandran, Bevita Kallupalathinkal |
author_sort |
Yang, Hui |
title |
Self-protection of electrochemical storage devices via a thermal reversible sol-gel transition |
title_short |
Self-protection of electrochemical storage devices via a thermal reversible sol-gel transition |
title_full |
Self-protection of electrochemical storage devices via a thermal reversible sol-gel transition |
title_fullStr |
Self-protection of electrochemical storage devices via a thermal reversible sol-gel transition |
title_full_unstemmed |
Self-protection of electrochemical storage devices via a thermal reversible sol-gel transition |
title_sort |
self-protection of electrochemical storage devices via a thermal reversible sol-gel transition |
publishDate |
2016 |
url |
https://hdl.handle.net/10356/80515 http://hdl.handle.net/10220/40590 |
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1681057541774114816 |