Spatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes

Dynamic chemical and structural heterogeneities within electrodes are known to lead to battery degradation and failure. Here, the authors show that X-ray diffraction computed tomography can be used to spatially quantify the dynamic crystallographic states of electrodes as they operate and degrade.

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Autores principales: Donal P. Finegan, Antonis Vamvakeros, Chun Tan, Thomas M. M. Heenan, Sohrab R. Daemi, Natalie Seitzman, Marco Di Michiel, Simon Jacques, Andrew M. Beale, Dan J. L. Brett, Paul R. Shearing, Kandler Smith
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/ec2d0d4b853d46e9a612bccb77dd8d7f
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spelling oai:doaj.org-article:ec2d0d4b853d46e9a612bccb77dd8d7f2021-12-02T16:49:14ZSpatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes10.1038/s41467-020-14467-x2041-1723https://doaj.org/article/ec2d0d4b853d46e9a612bccb77dd8d7f2020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14467-xhttps://doaj.org/toc/2041-1723Dynamic chemical and structural heterogeneities within electrodes are known to lead to battery degradation and failure. Here, the authors show that X-ray diffraction computed tomography can be used to spatially quantify the dynamic crystallographic states of electrodes as they operate and degrade.Donal P. FineganAntonis VamvakerosChun TanThomas M. M. HeenanSohrab R. DaemiNatalie SeitzmanMarco Di MichielSimon JacquesAndrew M. BealeDan J. L. BrettPaul R. ShearingKandler SmithNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-11 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Donal P. Finegan
Antonis Vamvakeros
Chun Tan
Thomas M. M. Heenan
Sohrab R. Daemi
Natalie Seitzman
Marco Di Michiel
Simon Jacques
Andrew M. Beale
Dan J. L. Brett
Paul R. Shearing
Kandler Smith
Spatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes
description Dynamic chemical and structural heterogeneities within electrodes are known to lead to battery degradation and failure. Here, the authors show that X-ray diffraction computed tomography can be used to spatially quantify the dynamic crystallographic states of electrodes as they operate and degrade.
format article
author Donal P. Finegan
Antonis Vamvakeros
Chun Tan
Thomas M. M. Heenan
Sohrab R. Daemi
Natalie Seitzman
Marco Di Michiel
Simon Jacques
Andrew M. Beale
Dan J. L. Brett
Paul R. Shearing
Kandler Smith
author_facet Donal P. Finegan
Antonis Vamvakeros
Chun Tan
Thomas M. M. Heenan
Sohrab R. Daemi
Natalie Seitzman
Marco Di Michiel
Simon Jacques
Andrew M. Beale
Dan J. L. Brett
Paul R. Shearing
Kandler Smith
author_sort Donal P. Finegan
title Spatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes
title_short Spatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes
title_full Spatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes
title_fullStr Spatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes
title_full_unstemmed Spatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes
title_sort spatial quantification of dynamic inter and intra particle crystallographic heterogeneities within lithium ion electrodes
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/ec2d0d4b853d46e9a612bccb77dd8d7f
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