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Multi-layered yolk-shell design containing carbon bridge connection for alloying anodes in lithium-ion batteries

Authors
Kim, DonghwiJayasubramaniyan, S.Kim, SeokjinKim, JueunKo, MinseokKim, TaehongYu, HooamAhn, Hyo-JunCho, Kwon-KooNam, Sang YongReddy, N. S.Sung, Jaekyung
Issue Date
Jul-2025
Publisher
OAE PUBLISHING INC
Keywords
Silicon anode; carbon bridge; lithiation kinetics; Li-ion battery
Citation
Energy Materials, v.5, no.7
Indexed
ESCI
Journal Title
Energy Materials
Volume
5
Number
7
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/77952
DOI
10.20517/energymater.2024.255
ISSN
2770-5900
2770-5900
Abstract
Designing a material structure that supports high-capacity and long cycle life in silicon (Si) anodes has been a longstanding challenge for advancing lithium-ion batteries. Yolk-shell design has been considered a most promising design for alleviating the volume expansion feature of Si. However, the significant void between the Si core and the outer shell limits electrical contact and the complete utilization of the Si core and deteriorates the battery performance upon cycling. In this study, we synthesized a bridged multi-layered yolk-shell (MYS) structure design via thermal decomposition of SiH4 and carbon oxidation in the air atmosphere. This MYS design features a void core and outmost shell containing SiOx/Si/SiOx which improves the electrical contact and lithiation kinetics of the Si core and addresses fundamental issues of low contact between core and shell. As a result, the CB-MYS structure exhibits a high specific capacity of 2,802.2 mAh g-1, an initial Coulombic efficiency of 90.0%, and maintains structural integrity and stable cycling performance. Hence, we believe the CB-MYS structure is a promising engineering design to enhance the performance of high-capacity alloy anodes for next-generation lithium-ion batteries.
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공과대학 > 나노신소재공학부금속재료공학전공 > Journal Articles
공학계열 > Dept.of Materials Engineering and Convergence Technology > Journal Articles

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Sung, Jae Kyung
대학원 (나노신소재융합공학과)
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