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Resolving nanostructure and chemistry of solid-electrolyte interphase on lithium anodes by depth-sensitive plasmon-enhanced Raman spectroscopy.

Authors :
Gu, Yu
You, En-Ming
Lin, Jian-De
Wang, Jun-Hao
Luo, Si-Heng
Zhou, Ru-Yu
Zhang, Chen-Jie
Yao, Jian-Lin
Li, Hui-Yang
Li, Gen
Wang, Wei-Wei
Qiao, Yu
Yan, Jia-Wei
Wu, De-Yin
Liu, Guo-Kun
Zhang, Li
Li, Jian-Feng
Xu, Rong
Tian, Zhong-Qun
Cui, Yi
Source :
Nature Communications; 6/15/2023, Vol. 14 Issue 1, p1-11, 11p
Publication Year :
2023

Abstract

The solid-electrolyte interphase (SEI) plays crucial roles for the reversible operation of lithium metal batteries. However, fundamental understanding of the mechanisms of SEI formation and evolution is still limited. Herein, we develop a depth-sensitive plasmon-enhanced Raman spectroscopy (DS-PERS) method to enable in-situ and nondestructive characterization of the nanostructure and chemistry of SEI, based on synergistic enhancements of localized surface plasmons from nanostructured Cu, shell-isolated Au nanoparticles and Li deposits at different depths. We monitor the sequential formation of SEI in both ether-based and carbonate-based dual-salt electrolytes on a Cu current collector and then on freshly deposited Li, with dramatic chemical reconstruction. The molecular-level insights from the DS-PERS study unravel the profound influences of Li in modifying SEI formation and in turn the roles of SEI in regulating the Li-ion desolvation and the subsequent Li deposition at SEI-coupled interfaces. Last, we develop a cycling protocol that promotes a favorable direct SEI formation route, which significantly enhances the performance of anode-free Li metal batteries. The solid-electrolyte interphase is crucial for most batteries, but its characterization is challenging. Here, authors develop a depth-sensitive plasmon-enhanced Raman spectroscopy method to enable in-situ and nondestructive resolving of its structure and chemistry as well as formation mechanisms. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
14
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
164355671
Full Text :
https://doi.org/10.1038/s41467-023-39192-z