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  4. In situ DRIFTS analysis of solid electrolyte interphase of si-based anode with and without fluoroethylene carbonate additive
 
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In situ DRIFTS analysis of solid electrolyte interphase of si-based anode with and without fluoroethylene carbonate additive

Journal
Journal of the Electrochemical Society
Journal Volume
164
Journal Issue
14
Pages
A3641-A3648
Date Issued
2017
Author(s)
Yohannes Y.B.
Lin S.D.
Wu N.-L.  
DOI
10.1149/2.0681714jes
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/408990
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85040734370&doi=10.1149%2f2.0681714jes&partnerID=40&md5=ad9932a7a422aebd04640d5aceedb014
Abstract
The effect of fluoroethylene carbonate (FEC) additive has been studied in the formation of solid electrolyte interphase (SEI) over Si-based anode using in-situ DRIFTS (diffuse reflectance infrared Fourier transform spectroscopy). SEI species were observed in the first lithiation cycle at an onset potential of 1.4 V in electrolyte containing 2 wt% vinylene carbonate (VC) + 10 wt% FEC and at 1.1 V in electrolyte without FEC additive. With blended VC and FEC, high carbon containing species including poly (FEC), poly (VC), and polycarbonates were identified, while poly (VC) and polycarbonates formed in the absence of FEC. The FEC additive also led to a higher content of organic phosphorous fluorides as compared to the electrolyte containing no FEC. Electrochemical analyses indicated that the combination of 2 wt% VC and 10 wt% FEC resulted in lower impedances and improved the stability of the Si-electrode through cycling as compared to that without FEC. DRIFTS provided evidence that similar SEI species formed after the initiation in the first cycle, and this formation was recorded for five cycles. Finally, possible reactions related to the reductive decomposition of FEC and VC are discussed. ? The Author(s) 2017. Published by ECS.
Type
journal article

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