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Lewis Acid Probe for Basicity of Sulfide Electrolytes Investigated by (11)B Solid-State NMR

[Image: see text] Sulfide-based solid-state lithium-ion batteries (SSLIB) have attracted a lot of interest globally in the past few years for their high safety and high energy density over the traditional lithium-ion batteries. However, sulfide electrolytes (SEs) are moisture-sensitive which pose si...

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Autores principales: Jiang, Shi-Kai, Yang, Sheng-Chiang, Nikodimos, Yosef, Huang, Shing-Jong, Lin, Kuan-Yu, Kuo, Yi-Hui, Tsai, Bo-Yang, Li, Jhao-Nan, Lin, Shawn D., Jiang, Jyh-Chiang, Wu, She-Huang, Su, Wei-Nien, Hwang, Bing Joe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10466319/
https://www.ncbi.nlm.nih.gov/pubmed/37654594
http://dx.doi.org/10.1021/jacsau.3c00242
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author Jiang, Shi-Kai
Yang, Sheng-Chiang
Nikodimos, Yosef
Huang, Shing-Jong
Lin, Kuan-Yu
Kuo, Yi-Hui
Tsai, Bo-Yang
Li, Jhao-Nan
Lin, Shawn D.
Jiang, Jyh-Chiang
Wu, She-Huang
Su, Wei-Nien
Hwang, Bing Joe
author_facet Jiang, Shi-Kai
Yang, Sheng-Chiang
Nikodimos, Yosef
Huang, Shing-Jong
Lin, Kuan-Yu
Kuo, Yi-Hui
Tsai, Bo-Yang
Li, Jhao-Nan
Lin, Shawn D.
Jiang, Jyh-Chiang
Wu, She-Huang
Su, Wei-Nien
Hwang, Bing Joe
author_sort Jiang, Shi-Kai
collection PubMed
description [Image: see text] Sulfide-based solid-state lithium-ion batteries (SSLIB) have attracted a lot of interest globally in the past few years for their high safety and high energy density over the traditional lithium-ion batteries. However, sulfide electrolytes (SEs) are moisture-sensitive which pose significant challenges in the material preparation and cell manufacturing. To the best of our knowledge, there is no tool available to probe the types and the strength of the basic sites in sulfide electrolytes, which is crucial for understanding the moisture stability of sulfide electrolytes. Herein, we propose a new spectral probe with the Lewis base indicator BBr(3) to probe the strength of Lewis basic sites on various sulfide electrolytes by (11)B solid-state NMR spectroscopy ((11)B-NMR). The active sulfur sites and the corresponding strength of the sulfide electrolytes are successfully evaluated by the proposed Lewis base probe. The probed strength of the active sulfur sites of a sulfide electrolyte is consistent with the results of DFT (density functional theory) calculation and correlated with the H(2)S generation rate when the electrolyte was exposed in moisture atmosphere. This work paves a new way to investigate the basicity and moisture stability of the sulfide electrolytes.
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spelling pubmed-104663192023-08-31 Lewis Acid Probe for Basicity of Sulfide Electrolytes Investigated by (11)B Solid-State NMR Jiang, Shi-Kai Yang, Sheng-Chiang Nikodimos, Yosef Huang, Shing-Jong Lin, Kuan-Yu Kuo, Yi-Hui Tsai, Bo-Yang Li, Jhao-Nan Lin, Shawn D. Jiang, Jyh-Chiang Wu, She-Huang Su, Wei-Nien Hwang, Bing Joe JACS Au [Image: see text] Sulfide-based solid-state lithium-ion batteries (SSLIB) have attracted a lot of interest globally in the past few years for their high safety and high energy density over the traditional lithium-ion batteries. However, sulfide electrolytes (SEs) are moisture-sensitive which pose significant challenges in the material preparation and cell manufacturing. To the best of our knowledge, there is no tool available to probe the types and the strength of the basic sites in sulfide electrolytes, which is crucial for understanding the moisture stability of sulfide electrolytes. Herein, we propose a new spectral probe with the Lewis base indicator BBr(3) to probe the strength of Lewis basic sites on various sulfide electrolytes by (11)B solid-state NMR spectroscopy ((11)B-NMR). The active sulfur sites and the corresponding strength of the sulfide electrolytes are successfully evaluated by the proposed Lewis base probe. The probed strength of the active sulfur sites of a sulfide electrolyte is consistent with the results of DFT (density functional theory) calculation and correlated with the H(2)S generation rate when the electrolyte was exposed in moisture atmosphere. This work paves a new way to investigate the basicity and moisture stability of the sulfide electrolytes. American Chemical Society 2023-08-04 /pmc/articles/PMC10466319/ /pubmed/37654594 http://dx.doi.org/10.1021/jacsau.3c00242 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Jiang, Shi-Kai
Yang, Sheng-Chiang
Nikodimos, Yosef
Huang, Shing-Jong
Lin, Kuan-Yu
Kuo, Yi-Hui
Tsai, Bo-Yang
Li, Jhao-Nan
Lin, Shawn D.
Jiang, Jyh-Chiang
Wu, She-Huang
Su, Wei-Nien
Hwang, Bing Joe
Lewis Acid Probe for Basicity of Sulfide Electrolytes Investigated by (11)B Solid-State NMR
title Lewis Acid Probe for Basicity of Sulfide Electrolytes Investigated by (11)B Solid-State NMR
title_full Lewis Acid Probe for Basicity of Sulfide Electrolytes Investigated by (11)B Solid-State NMR
title_fullStr Lewis Acid Probe for Basicity of Sulfide Electrolytes Investigated by (11)B Solid-State NMR
title_full_unstemmed Lewis Acid Probe for Basicity of Sulfide Electrolytes Investigated by (11)B Solid-State NMR
title_short Lewis Acid Probe for Basicity of Sulfide Electrolytes Investigated by (11)B Solid-State NMR
title_sort lewis acid probe for basicity of sulfide electrolytes investigated by (11)b solid-state nmr
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10466319/
https://www.ncbi.nlm.nih.gov/pubmed/37654594
http://dx.doi.org/10.1021/jacsau.3c00242
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