- 羅鯤 教授,博士生導(dǎo)師
- 常州大學(xué)
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A Ga-Sn liquid metal-mediated structural cathode for Li-O2 batteries
作者:Z. Luo, C. Ji , L. Yin, G. Zhu, B.B. Xu, Y. Wang, T.X. Liu* , X. Zhuge, K. Luo*
關(guān)鍵字:Li-O2 batteries, Ga-Sn liquid metal, Flaky Li2O2, Cathode passivation
論文來源:期刊
發(fā)表時(shí)間:2020年
One of the recent challenges in LieO2 battery technology is the cycle life, which can be severelyshortened by cathode passivation induced by discharge product accumulation; this can be eliminated byreducing the amount of discharge products. Herein, we report a feasibility study on the development of aGaeSn liquid metal (LM)-functionalized multiwalled carbon nanotubes (MWNTs) cathode. In a comparison of MWNT, LM, m-LM/MWNT (pre-mixed LM and MWNTs), and LM/MWNT (LM-modififiedMWNTs) cathodes, morphology analysis showed that small Li2O2 flflakes rather than large crystalsgrow on the conductive GaeSn LM and MWNTs of the LM/MWNT cathode only. The decomposition of theflflaky Li2O2 on the LM/MWNT cathode occurred at lower charge overpotentials, resulting in low polarization; thus, the cathode passivation and the consumption of the Li anode were both alleviated duringthe cyclic process. The LM/MWNT cathode signifificantly improved the cycle life, rate performance, andultimate capacity of Li-O2 batteries.
關(guān)鍵字:Li-O2 batteries, Ga-Sn liquid metal, Flaky Li2O2, Cathode passivation
論文來源:期刊
發(fā)表時(shí)間:2020年
One of the recent challenges in LieO2 battery technology is the cycle life, which can be severelyshortened by cathode passivation induced by discharge product accumulation; this can be eliminated byreducing the amount of discharge products. Herein, we report a feasibility study on the development of aGaeSn liquid metal (LM)-functionalized multiwalled carbon nanotubes (MWNTs) cathode. In a comparison of MWNT, LM, m-LM/MWNT (pre-mixed LM and MWNTs), and LM/MWNT (LM-modififiedMWNTs) cathodes, morphology analysis showed that small Li2O2 flflakes rather than large crystalsgrow on the conductive GaeSn LM and MWNTs of the LM/MWNT cathode only. The decomposition of theflflaky Li2O2 on the LM/MWNT cathode occurred at lower charge overpotentials, resulting in low polarization; thus, the cathode passivation and the consumption of the Li anode were both alleviated duringthe cyclic process. The LM/MWNT cathode signifificantly improved the cycle life, rate performance, andultimate capacity of Li-O2 batteries.