4D imaging of lithium-batteries using correlative neutron and X-ray tomography with a virtual unrolling technique

The combination of X-ray and neutron CT enables 4D studies, i.e. to explore the evolution of 3D structures with time. Here the authors apply this approach to a Li-ion primary cell, revealing elsewhere unseen trends in the spatial distribution of performance aided by a new ‘unrolling’ methodology....

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Autores principales: Ralf F. Ziesche, Tobias Arlt, Donal P. Finegan, Thomas M. M. Heenan, Alessandro Tengattini, Daniel Baum, Nikolay Kardjilov, Henning Markötter, Ingo Manke, Winfried Kockelmann, Dan J. L. Brett, Paul R. Shearing
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/7dfe8293b78244b886754f01238af709
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spelling oai:doaj.org-article:7dfe8293b78244b886754f01238af7092021-12-02T15:34:35Z4D imaging of lithium-batteries using correlative neutron and X-ray tomography with a virtual unrolling technique10.1038/s41467-019-13943-32041-1723https://doaj.org/article/7dfe8293b78244b886754f01238af7092020-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13943-3https://doaj.org/toc/2041-1723The combination of X-ray and neutron CT enables 4D studies, i.e. to explore the evolution of 3D structures with time. Here the authors apply this approach to a Li-ion primary cell, revealing elsewhere unseen trends in the spatial distribution of performance aided by a new ‘unrolling’ methodology.Ralf F. ZiescheTobias ArltDonal P. FineganThomas M. M. HeenanAlessandro TengattiniDaniel BaumNikolay KardjilovHenning MarkötterIngo MankeWinfried KockelmannDan J. L. BrettPaul R. ShearingNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-11 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ralf F. Ziesche
Tobias Arlt
Donal P. Finegan
Thomas M. M. Heenan
Alessandro Tengattini
Daniel Baum
Nikolay Kardjilov
Henning Markötter
Ingo Manke
Winfried Kockelmann
Dan J. L. Brett
Paul R. Shearing
4D imaging of lithium-batteries using correlative neutron and X-ray tomography with a virtual unrolling technique
description The combination of X-ray and neutron CT enables 4D studies, i.e. to explore the evolution of 3D structures with time. Here the authors apply this approach to a Li-ion primary cell, revealing elsewhere unseen trends in the spatial distribution of performance aided by a new ‘unrolling’ methodology.
format article
author Ralf F. Ziesche
Tobias Arlt
Donal P. Finegan
Thomas M. M. Heenan
Alessandro Tengattini
Daniel Baum
Nikolay Kardjilov
Henning Markötter
Ingo Manke
Winfried Kockelmann
Dan J. L. Brett
Paul R. Shearing
author_facet Ralf F. Ziesche
Tobias Arlt
Donal P. Finegan
Thomas M. M. Heenan
Alessandro Tengattini
Daniel Baum
Nikolay Kardjilov
Henning Markötter
Ingo Manke
Winfried Kockelmann
Dan J. L. Brett
Paul R. Shearing
author_sort Ralf F. Ziesche
title 4D imaging of lithium-batteries using correlative neutron and X-ray tomography with a virtual unrolling technique
title_short 4D imaging of lithium-batteries using correlative neutron and X-ray tomography with a virtual unrolling technique
title_full 4D imaging of lithium-batteries using correlative neutron and X-ray tomography with a virtual unrolling technique
title_fullStr 4D imaging of lithium-batteries using correlative neutron and X-ray tomography with a virtual unrolling technique
title_full_unstemmed 4D imaging of lithium-batteries using correlative neutron and X-ray tomography with a virtual unrolling technique
title_sort 4d imaging of lithium-batteries using correlative neutron and x-ray tomography with a virtual unrolling technique
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/7dfe8293b78244b886754f01238af709
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