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Optimization of Heat Treatment Conditions for Fabricating Pre-Lithiated Silicon Monoxide as an Anode Material for Lithium-Ion Batteries

Authors
Yom, Jee HoSeong, Il WonCho, Sung ManYoon, Woo Young
Issue Date
2018
Publisher
ELECTROCHEMICAL SOC INC
Citation
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, v.165, no.3, pp.A603 - A608
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Volume
165
Number
3
Start Page
A603
End Page
A608
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/80952
DOI
10.1149/2.0911803jes
ISSN
0013-4651
Abstract
Herein, we compared the galvanostat- and thermal-driven electrochemical reactions occurring in lithiated silicon monoxide and found that the kinetics of the initial irreversible formation of certain phases (galvanostat-electrochemical reaction) do not agree with those of the pre-lithiation reaction between silicon monoxide and lithium metal (thermal-driven electrochemical reaction). However, thermal-driven electrochemical reactions occurring at high temperatures yielded phases similar to those formed galvanostatically, thereby reducing the initial irreversibility of cell. The kinetics of pre-lithiationwere investigated by heating a siliconmonoxide/ lithium powder mixture to 600 degrees C at heating rates of 9 degrees C min(-1) and 14 degrees C min(-1). Lithium oxide and lithium metasilicate were formed in both cases, while lithium silicate was formed only when the heating rate was 14 degrees C min(-1). The identities of these irreversibly formed products were determined by XRD, DTA and the effect of heating rate was elucidated by electrochemical tests. Pre-lithiated samples heated at rates of 9 degrees C min(-1) and 14 degrees C min(-1) exhibited initial coulombic efficiencies of 78.83% and 81.72%, respectively. These values are higher than those observed for bare silicon monoxide anodes, thus indicating that heating conditions influence the irreversible formation of the above mentioned phases and affect the irreversible capacity of silicon monoxide. (C) 2018 The Electrochemical Society.
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공과대학 (신소재공학부)
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