Understanding crystallization pathways leading to manganese oxide polymorph formation

Minor variations in synthesis conditions can redirect crystallization pathways through different nonequilibrium intermediates. Here, the authors present a theoretical framework to predict which polymorphs appear during MnO2 precipitation, which is validated by in situ X-ray scattering of reaction pr...

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Autores principales: Bor-Rong Chen, Wenhao Sun, Daniil A. Kitchaev, John S. Mangum, Vivek Thampy, Lauren M. Garten, David S. Ginley, Brian P. Gorman, Kevin H. Stone, Gerbrand Ceder, Michael F. Toney, Laura T. Schelhas
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/47c0fc7a94434452b983c298df4c43dd
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spelling oai:doaj.org-article:47c0fc7a94434452b983c298df4c43dd2021-12-02T17:33:02ZUnderstanding crystallization pathways leading to manganese oxide polymorph formation10.1038/s41467-018-04917-y2041-1723https://doaj.org/article/47c0fc7a94434452b983c298df4c43dd2018-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-04917-yhttps://doaj.org/toc/2041-1723Minor variations in synthesis conditions can redirect crystallization pathways through different nonequilibrium intermediates. Here, the authors present a theoretical framework to predict which polymorphs appear during MnO2 precipitation, which is validated by in situ X-ray scattering of reaction progression.Bor-Rong ChenWenhao SunDaniil A. KitchaevJohn S. MangumVivek ThampyLauren M. GartenDavid S. GinleyBrian P. GormanKevin H. StoneGerbrand CederMichael F. ToneyLaura T. SchelhasNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-9 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Bor-Rong Chen
Wenhao Sun
Daniil A. Kitchaev
John S. Mangum
Vivek Thampy
Lauren M. Garten
David S. Ginley
Brian P. Gorman
Kevin H. Stone
Gerbrand Ceder
Michael F. Toney
Laura T. Schelhas
Understanding crystallization pathways leading to manganese oxide polymorph formation
description Minor variations in synthesis conditions can redirect crystallization pathways through different nonequilibrium intermediates. Here, the authors present a theoretical framework to predict which polymorphs appear during MnO2 precipitation, which is validated by in situ X-ray scattering of reaction progression.
format article
author Bor-Rong Chen
Wenhao Sun
Daniil A. Kitchaev
John S. Mangum
Vivek Thampy
Lauren M. Garten
David S. Ginley
Brian P. Gorman
Kevin H. Stone
Gerbrand Ceder
Michael F. Toney
Laura T. Schelhas
author_facet Bor-Rong Chen
Wenhao Sun
Daniil A. Kitchaev
John S. Mangum
Vivek Thampy
Lauren M. Garten
David S. Ginley
Brian P. Gorman
Kevin H. Stone
Gerbrand Ceder
Michael F. Toney
Laura T. Schelhas
author_sort Bor-Rong Chen
title Understanding crystallization pathways leading to manganese oxide polymorph formation
title_short Understanding crystallization pathways leading to manganese oxide polymorph formation
title_full Understanding crystallization pathways leading to manganese oxide polymorph formation
title_fullStr Understanding crystallization pathways leading to manganese oxide polymorph formation
title_full_unstemmed Understanding crystallization pathways leading to manganese oxide polymorph formation
title_sort understanding crystallization pathways leading to manganese oxide polymorph formation
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/47c0fc7a94434452b983c298df4c43dd
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