2020
DOI: 10.1021/acsami.0c09384
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Electrochemical Reactivity and Passivation of Silicon Thin-Film Electrodes in Organic Carbonate Electrolytes

Abstract: This work focuses on the mechanisms of interfacial processes at the surface of amorphous silicon thin-film electrodes in organic carbonate electrolytes to unveil the origins of the inherent non-passivating behavior of silicon anodes in Li-ion batteries. Attenuated total reflection Fouriertransform infrared spectroscopy (ATR-FTIR), X-ray absorption spectroscopy (XAS), and infrared near-field scanning optical microscopy (IR aNSOM) were used to investigate the formation, evolution and chemical composition of the … Show more

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Cited by 56 publications
(83 citation statements)
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References 74 publications
(187 reference statements)
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“…The thin and largely inorganic SEI formed on a-AlSiMn differs substantially from the thicker and more organic SEI typically formed on Si electrodes in comparable electrolytes (33,37). A comparison of XPS data collected on a-AlMnSi and 50 nm amorphous Si thin films that were galvanostatically lithiated in the same electrolyte is given in Fig.…”
Section: Sei Compositionmentioning
confidence: 95%
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“…The thin and largely inorganic SEI formed on a-AlSiMn differs substantially from the thicker and more organic SEI typically formed on Si electrodes in comparable electrolytes (33,37). A comparison of XPS data collected on a-AlMnSi and 50 nm amorphous Si thin films that were galvanostatically lithiated in the same electrolyte is given in Fig.…”
Section: Sei Compositionmentioning
confidence: 95%
“…Aluminum and copper were purchased as foils from Alfa Aesar and used without further preparation. Amorphous silicon electrodes were prepared by sputtering a 50 nm film onto Cu foil as described elsewhere (33). The as-prepared Si thin films exhibited a 3 nm native SiO 2 surface layer, and a density of 2.1 g/cm 3 (33) .…”
Section: Electrochemical Cell Assembly and Testingmentioning
confidence: 99%
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“…The chemical composition and thickness of the SEI film continuously change during the charging/discharging cycles. [ 80 ] This SEI film continuously change is directly related to the formation of lithium ethylene dicarbonate (LiEDC) and LiPF 6 decomposition products during silicon lithiation, and the products subsequent disappear upon delithiation.…”
Section: Efficient Strategies Toward Si Anodesmentioning
confidence: 99%
“…In Figure 12c, it illustrates the detailed procedure for recycling industrial waste and preparation of Si/SiO 2 . [ 80 ] The Si/SiO 2 are derived from Si loss slurry in solar industry and quartz sand waste, and used for anodes. By inheriting the intrinsic advantage of Si and SiO 2 , the composites exhibit 992.8 mAh g −1 after 400 cycles at 0.5 A g −1 without capacity decay.…”
Section: Toward Practical Applicationsmentioning
confidence: 99%