Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte
Tributyl borate is used as a novel electrolyte additive to improve the stability of LiCoO2 cathode operating at a high charging-cutoff voltage. The HOMO energy calculation notes that Tributyl borate would be preferentially oxidized and then generate a more uniform, extremely stable, and lower resist...
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my.um.eprints.210052019-04-18T06:43:33Z http://eprints.um.edu.my/21005/ Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte Qin, Zhaoming Hong, Bo Duan, Boyu Hong, Shu Chen, Yuncai Lai, Yanqing Feng, Jiang Q Science (General) QC Physics Tributyl borate is used as a novel electrolyte additive to improve the stability of LiCoO2 cathode operating at a high charging-cutoff voltage. The HOMO energy calculation notes that Tributyl borate would be preferentially oxidized and then generate a more uniform, extremely stable, and lower resistance cathode solid electrolyte interphase (CEI) on the LiCoO2 surface. This CEI film can effectively suppress the subsequent decomposition of electrolyte and improve cyclic stability and discharge capability of LiCoO2 cathode. With the electrolyte contained 0.5 wt.% tributyl borate, the LiCoO2/Li cells achieve a capacity retention of 85.2% after 120 cycles at 3.0–4.4 V, comparing to the capacity retention of 37.7% for the cells without tributyl borate. Elsevier 2018 Article PeerReviewed Qin, Zhaoming and Hong, Bo and Duan, Boyu and Hong, Shu and Chen, Yuncai and Lai, Yanqing and Feng, Jiang (2018) Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte. Electrochimica Acta, 276. pp. 412-416. ISSN 0013-4686 https://doi.org/10.1016/j.electacta.2018.04.193 doi:10.1016/j.electacta.2018.04.193 |
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Q Science (General) QC Physics Qin, Zhaoming Hong, Bo Duan, Boyu Hong, Shu Chen, Yuncai Lai, Yanqing Feng, Jiang Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte |
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Tributyl borate is used as a novel electrolyte additive to improve the stability of LiCoO2 cathode operating at a high charging-cutoff voltage. The HOMO energy calculation notes that Tributyl borate would be preferentially oxidized and then generate a more uniform, extremely stable, and lower resistance cathode solid electrolyte interphase (CEI) on the LiCoO2 surface. This CEI film can effectively suppress the subsequent decomposition of electrolyte and improve cyclic stability and discharge capability of LiCoO2 cathode. With the electrolyte contained 0.5 wt.% tributyl borate, the LiCoO2/Li cells achieve a capacity retention of 85.2% after 120 cycles at 3.0–4.4 V, comparing to the capacity retention of 37.7% for the cells without tributyl borate. |
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Article |
author |
Qin, Zhaoming Hong, Bo Duan, Boyu Hong, Shu Chen, Yuncai Lai, Yanqing Feng, Jiang |
author_facet |
Qin, Zhaoming Hong, Bo Duan, Boyu Hong, Shu Chen, Yuncai Lai, Yanqing Feng, Jiang |
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Qin, Zhaoming |
title |
Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte |
title_short |
Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte |
title_full |
Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte |
title_fullStr |
Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte |
title_full_unstemmed |
Tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte |
title_sort |
tributyl borate as a novel electrolyte additive to improve high voltage stability of lithium cobalt oxide in carbonate-based electrolyte |
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Elsevier |
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2018 |
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http://eprints.um.edu.my/21005/ https://doi.org/10.1016/j.electacta.2018.04.193 |
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