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The synergistic effects of combining the high energy mechanical milling and wet milling on Si negative electrode materials for lithium ion battery
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The synergistic effects of combining the high energy mechanical milling and wet milling on Si negative electrode materials for lithium ion battery

Shang-Chieh Hou, Yuh-Fan Su, Chia-Chin Chang, Chih-Wei Hu, Tsan-Yao Chen, Shun-Min YangJow-Lay Huang
Journal of Power Sources, 卷.349, 頁碼.111-120
05/2017

摘要

Anode High energy mechanical milling Lithium-ion battery Si Wet milling Renewable Energy Sustainability and the Environment Energy Engineering and Power Technology Physical and Theoretical Chemistry Electrical and Electronic Engineering
The submicro-sized and nanostructured Si aggregated powder is prepared by combinational routes of high energy mechanical milling (HEMM) and wet milling. Milled Si powder is investigated by particle size analyzer, SEM, TEM, XPS and XRD as well as the control ones. Its electrode is also investigated by in situ XRD and electrochemical performance. Morphology reveals that combining the high energy mechanical milling and wet milling not only fracture primary Si particles but also form submicro-sized Si aggregates constructed by amorphous and nanocrystalline phases. Moreover, XPS shows that wet milling in ethanol trigger Si[sbnd]O[sbnd]CH 2 CH 3 bonding on Si surface might enhance the SEI formation. In situ XRD analysis shows negative electrode made of submicro-sized Si aggregated powder can effectively suppress formation of crystalline Li 15 Si 4 during lithiation and delithiation due to amorphous and nanocrystalline construction. Thus, the submicro-sized Si powder with synergistic effects combining the high energy mechanical milling and wet milling in ethanol as negative electrode performs better capacity retention.

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