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2D titanium carbide(MXene) electrodes with lower-F surface for high performance lithium-ion batteries 被引量:11
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作者 Ming Lu Haojie Li +9 位作者 Wenjuan Han Junnan Chen Wen Shi Jiaheng Wang Xiang-Min Meng jingang qi Haibo Li Bingsen Zhang Wei Zhang Weitao Zheng 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第4期148-153,共6页
MXene has shown distinctive advantages as anode materials of lithium-ion batteries. However, local surface chemistry, which was confirmed that can block ion transfer and limit redox reaction, has a significant effect ... MXene has shown distinctive advantages as anode materials of lithium-ion batteries. However, local surface chemistry, which was confirmed that can block ion transfer and limit redox reaction, has a significant effect on electrochemical performance. Herein, annealing MXene under hydrogen was employed for removing-F and turning-OH to-O terminations. We demonstrate that it improves the kinetics of Li-ion transport between the electrolyte and electrode. As a result, a lower interfacial charge transfer impedance was obtained. The electrochemical measurement exhibited that a nearly 2-fold increase of specific capacity was achieved for the annealed MXene. 展开更多
关键词 Ti3C2 MXene LI-ION Hydrogen -F CONTENT
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Casting structure of pure aluminum by electric pulse modification at different superheated temperatures 被引量:6
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作者 jingang qi Jianzhong Wang +2 位作者 Xingjiang Liu Bing Wang Daqiang Cang 《Journal of University of Science and Technology Beijing》 CSCD 2005年第6期527-530,共4页
Electric pulse modification (EPM) is a novel technique that reduces grain size by altering the structure of a melt. It was investigated that the response of the casting structure of high pure aluminum to EPM in diff... Electric pulse modification (EPM) is a novel technique that reduces grain size by altering the structure of a melt. It was investigated that the response of the casting structure of high pure aluminum to EPM in different superheated melts. The results indicate that the grain refining effect of a given pulse electric field holds an optimal temperature range, moreover, a lower or higher superheated temperature will both disadvantage the improvements of casting structure. It essentially lies in the cooperative action between the distorted absorption of clusters and the activated capability of atoms in the aluminum melt. 展开更多
关键词 electric pulse modification SUPERHEAT casting structure CLUSTER activated ability
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