Communities & Collections
Researchers & Labs
Titles
DGIST
LIBRARY
DGIST R&D
Detail View
Division of Energy & Environmental Technology
1. Journal Articles
Tunable solid electrolyte interphase formation on SiO anodes using SnO artificial layers for Lithium-ion batteries
Baek, Seong-Ho
;
Jeong, Young-Min
;
Shin, Chul Seung
;
Choi, Joon Byung
;
Han, Hwan Jeong
Division of Energy & Environmental Technology
1. Journal Articles
Citations
WEB OF SCIENCE
Citations
SCOPUS
Metadata Downloads
XML
Excel
Title
Tunable solid electrolyte interphase formation on SiO anodes using SnO artificial layers for Lithium-ion batteries
Issued Date
2021-05
Citation
Baek, Seong-Ho. (2021-05). Tunable solid electrolyte interphase formation on SiO anodes using SnO artificial layers for Lithium-ion batteries. Applied Surface Science, 549, 149028. doi: 10.1016/j.apsusc.2021.149028
Type
Article
Author Keywords
Artificial layer
;
Atomic layer deposition
;
Lithium-ion batteries
;
Silicon monoxide
;
Solid electrolyte interphase
ISSN
0169-4332
Abstract
In this study, we investigated the effects of SnO artificial layer on the solid electrolyte interphase (SEI) in SiO anodes by varying the layer thickness via the atomic layer deposition technique. Two major SEI components, namely LiF and Li2CO3, were obtained from the electrolyte decomposition, which appeared on the anode surface depending on the artificial SnO–layer thickness. Experimental results revealed that the excellent interfacial kinetics of the SnO-100 sample originated from the multi-component SEI suppressing the electrolyte decomposition. The thickness of the SnO artificial layer was optimized based on the electrochemical performance. Therefore, it can be inferred that artificial layer on anodes provides an efficient way to control the SEI composition and improves the electrochemical activities of the anode materials. © 2021 Elsevier B.V.
URI
http://hdl.handle.net/20.500.11750/13818
DOI
10.1016/j.apsusc.2021.149028
Publisher
Elsevier BV
Show Full Item Record
File Downloads
There are no files associated with this item.
공유
공유하기
Related Researcher
Baek, Seong-Ho
백성호
Division of Energy Technology
read more
Total Views & Downloads