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Influence of carbonate-based additives on the electrochemical performance of Si NW anodes cycled in an ionic liquid electrolyte.

journal contribution
posted on 2020-10-23, 11:24 authored by Killian Stokes, Tadhg KennedyTadhg Kennedy, Guk-Tae Kim, Hugh GeaneyHugh Geaney, Dylan Storan, Fathima R. Laffir, Giovanni Battista Appetecchi, Stefano Passerini, Kevin M. RyanKevin M. Ryan
Addition of electrolyte additives (ethylene or vinylene carbonate) is shown to dramatically improve the cycling stability and capacity retention (1600 mAh g-1) of Si nanowires (NWs) in a safe ionic liquid (IL) electrolyte (0.1LiTFSI-0.6PYR13FSI-0.3PYR13TFSI). We show, using postmortem SEM and TEM, a distinct difference in morphologies of the active material after cycling in the presence or absence of the additives. The difference in performance is shown by postmortem XPS analysis to arise from a notable increase in irreversible silicate formation in the absence of the carbonate additives. The composition of the solid electrolyte interphase (SEI) formed at the active material surface was further analyzed using XPS as a function of the IL components revealing that the SEI was primarily made up of N-, F-, and S-containing compounds from the degradation of the TFSI and FSI anions.

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History

Publication

Nano Letters;20 (10), pp. 7011-7019

Note

peer-reviewed

Other Funding information

ERC, European Union (EU), SFI, IRC, European Union (EU), Horizon 2020

Rights

© Year ACS This document is the Accepted Manuscript version of a Published Work that appeared in final form in Nano Letters, copyright © American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acs.nanolett.0c01774

Language

English

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