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Jiang, Shi-Kai, Yang, Sheng-Chiang, Huang, Wei-Hsiang, Sung, Hung-Yi, Lin, Ruo-Yun, Li, Jhao-Nan, Tsai, Bo-Yang, Agnihotri, Tripti, Nikodimos, Yosef, Wang, Chia-Hsin, Lin, Shawn D., Wang, Chun-Chieh, Wu, She-Huang, Su, Wei-Nien, Hwang, Bing Joe (2023) Enhancing the interfacial stability between argyrodite sulfide-based solid electrolytes and lithium electrodes through CO2 adsorption. Journal of Materials Chemistry A, 11 (6) 2910-2919 doi:10.1039/d2ta08148b

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Reference TypeJournal (article/letter/editorial)
TitleEnhancing the interfacial stability between argyrodite sulfide-based solid electrolytes and lithium electrodes through CO2 adsorption
JournalJournal of Materials Chemistry A
AuthorsJiang, Shi-KaiAuthor
Yang, Sheng-ChiangAuthor
Huang, Wei-HsiangAuthor
Sung, Hung-YiAuthor
Lin, Ruo-YunAuthor
Li, Jhao-NanAuthor
Tsai, Bo-YangAuthor
Agnihotri, TriptiAuthor
Nikodimos, YosefAuthor
Wang, Chia-HsinAuthor
Lin, Shawn D.Author
Wang, Chun-ChiehAuthor
Wu, She-HuangAuthor
Su, Wei-NienAuthor
Hwang, Bing JoeAuthor
Year2023Volume11
Issue6
PublisherRoyal Society of Chemistry (RSC)
DOIdoi:10.1039/d2ta08148bSearch in ResearchGate
Generate Citation Formats
Mindat Ref. ID15696024Long-form Identifiermindat:1:5:15696024:5
GUID0
Full ReferenceJiang, Shi-Kai, Yang, Sheng-Chiang, Huang, Wei-Hsiang, Sung, Hung-Yi, Lin, Ruo-Yun, Li, Jhao-Nan, Tsai, Bo-Yang, Agnihotri, Tripti, Nikodimos, Yosef, Wang, Chia-Hsin, Lin, Shawn D., Wang, Chun-Chieh, Wu, She-Huang, Su, Wei-Nien, Hwang, Bing Joe (2023) Enhancing the interfacial stability between argyrodite sulfide-based solid electrolytes and lithium electrodes through CO2 adsorption. Journal of Materials Chemistry A, 11 (6) 2910-2919 doi:10.1039/d2ta08148b
Plain TextJiang, Shi-Kai, Yang, Sheng-Chiang, Huang, Wei-Hsiang, Sung, Hung-Yi, Lin, Ruo-Yun, Li, Jhao-Nan, Tsai, Bo-Yang, Agnihotri, Tripti, Nikodimos, Yosef, Wang, Chia-Hsin, Lin, Shawn D., Wang, Chun-Chieh, Wu, She-Huang, Su, Wei-Nien, Hwang, Bing Joe (2023) Enhancing the interfacial stability between argyrodite sulfide-based solid electrolytes and lithium electrodes through CO2 adsorption. Journal of Materials Chemistry A, 11 (6) 2910-2919 doi:10.1039/d2ta08148b
In(2023) Journal of Materials Chemistry A Vol. 11 (6) Royal Society of Chemistry (RSC)


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