Impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes

Severe structural deformation during (de)lithiation is the main factor limiting the stability of Si anodes in Li-ion batteries. Here, a multi-modal approach is used to visualize these deformations in their early-stage and link them to inhomogeneities in the dual-layer solid-electrolyte interphase.

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Autores principales: Chunguang Chen, Tao Zhou, Dmitri L. Danilov, Lu Gao, Svenja Benning, Nino Schön, Samuel Tardif, Hugh Simons, Florian Hausen, Tobias U. Schülli, R.-A. Eichel, Peter H. L. Notten
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/c57e1d82a92a4f03890b09de2fcadb1c
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spelling oai:doaj.org-article:c57e1d82a92a4f03890b09de2fcadb1c2021-12-02T14:34:06ZImpact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes10.1038/s41467-020-17104-92041-1723https://doaj.org/article/c57e1d82a92a4f03890b09de2fcadb1c2020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17104-9https://doaj.org/toc/2041-1723Severe structural deformation during (de)lithiation is the main factor limiting the stability of Si anodes in Li-ion batteries. Here, a multi-modal approach is used to visualize these deformations in their early-stage and link them to inhomogeneities in the dual-layer solid-electrolyte interphase.Chunguang ChenTao ZhouDmitri L. DanilovLu GaoSvenja BenningNino SchönSamuel TardifHugh SimonsFlorian HausenTobias U. SchülliR.-A. EichelPeter H. L. NottenNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chunguang Chen
Tao Zhou
Dmitri L. Danilov
Lu Gao
Svenja Benning
Nino Schön
Samuel Tardif
Hugh Simons
Florian Hausen
Tobias U. Schülli
R.-A. Eichel
Peter H. L. Notten
Impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes
description Severe structural deformation during (de)lithiation is the main factor limiting the stability of Si anodes in Li-ion batteries. Here, a multi-modal approach is used to visualize these deformations in their early-stage and link them to inhomogeneities in the dual-layer solid-electrolyte interphase.
format article
author Chunguang Chen
Tao Zhou
Dmitri L. Danilov
Lu Gao
Svenja Benning
Nino Schön
Samuel Tardif
Hugh Simons
Florian Hausen
Tobias U. Schülli
R.-A. Eichel
Peter H. L. Notten
author_facet Chunguang Chen
Tao Zhou
Dmitri L. Danilov
Lu Gao
Svenja Benning
Nino Schön
Samuel Tardif
Hugh Simons
Florian Hausen
Tobias U. Schülli
R.-A. Eichel
Peter H. L. Notten
author_sort Chunguang Chen
title Impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes
title_short Impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes
title_full Impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes
title_fullStr Impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes
title_full_unstemmed Impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes
title_sort impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in si electrodes
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/c57e1d82a92a4f03890b09de2fcadb1c
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