Cyclability evaluation on Si based Negative Electrode in Lithium ion Battery by Graphite Phase Evolution: an operando X-ray diffraction study

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作者
Chih-Wei Hu
Jyh-Pin Chou
Shang-Chieh Hou
Alice Hu
Yu-Fan Su
Tsan-Yao Chen
Wing-Keong Liew
Yen-Fa Liao
Jow-Lay Huang
Jin-Ming Chen
Chia-Chin Chang
机构
[1] National Tsing Hua University,Department of Engineering and System Science
[2] City University of Hong Kong,Department of mechanical and biomedical engineering
[3] National Cheng Kung University,Department of Materials Science and Engineering
[4] National University of Tainan,Department of Greenergy
[5] National Cheng Kung University,Hierarchical Green
[6] National Synchrotron Radiation Research Center,Energy Materials (Hi
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Artificial graphite (FSN) additive is employed as internal structural label for projecting cyclability of Si material native electrode in a mass ratio of Si/FSN = 1.0 in Li ion battery (LIB). Results of operando X-ray diffraction analysis on Si-FSN negative electrode in LIB demonstrate that one can evaluate the lithiation and delithiation affinity of active material by referring phase transition delay of graphite as affected by experimental splits in a formation process of LIB. We prove that a thin layer of surface amorphous structure and residual lattice strain are formed in Si by high energy ball-milling treatment. Those manipulations improve Li intercalation kinetics and thus enabling a capacity fading of less than 10% (from 1860 to 1650 mAhg−1) for Si negative electrode in 50 cycles. Of utmost importance, this study discloses a robust assessment for revealing mechanism on amorphous and strain related silicide formation and predicting cyclability of negative electrode by quantitative phase evolution rate of FSN additive in LIB.
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