- By:
- Veith, Gabriel M; Browning, Katie L; Lam, Steven ; Sacci, Robert L; Doucet, Mathieu ; Browning, James F
- Journal Name:
- ACS Applied Energy Materials
- Page Number:
- 16364-16375
- Volume:
- 8
- Issue Number:
- 21
- Publication Date:
- February 17, 2026
- View DOI Listing:
- https://doi.org/10.1021/acsaem.5c03137
Abstract
We investigated the chemistry and structure of the solid electrolyte interphase (SEI) grown over a silicon anode as a function of the lithium salt concentration. In these experiments, in situ neutron reflectivity measurements were performed to measure the thickness and composition of the SEI formed from 1.0 and 5.5 M lithium bis(trifluoromethane)sulfonimide (LiTFSI) in standard ethylene carbonate:dimethyl carbonate electrolytes. These measurements reveal the formation of a 350+ Å thick SEI layer that is predominantly organic (∼80%) and dimensionally stable when using a 1.0 M salt solution. In contrast, increasing the salt concentration to 5.5 M resulted in an SEI that exhibited thickness changes from 100 to 375 Å and became up to 30% inorganic. These compositional and structural changes point to the role of salt speciation on the resulting passivation of silicon electrodes and indicate the need to form more organic-like passivation layers to promote the calendar life of silicon anodes.