A metamorphic inorganic framework that can be switched between eight single-crystalline states

Crystal engineering is a powerful process for assembling complex materials but tends to require organic building blocks, which can limit stability. Here, the authors use inorganic polyoxometalates to assemble an all-inorganic metamorphic framework that can be switched between eight distinct states.

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Autores principales: Caihong Zhan, Jamie M. Cameron, David Gabb, Thomas Boyd, Ross S. Winter, Laia Vilà-Nadal, Scott G. Mitchell, Stefan Glatzel, Joachim Breternitz, Duncan H. Gregory, De-Liang Long, Andrew Macdonell, Leroy Cronin
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/92590882b1ce4876b61d7893887a9754
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spelling oai:doaj.org-article:92590882b1ce4876b61d7893887a97542021-12-02T15:37:00ZA metamorphic inorganic framework that can be switched between eight single-crystalline states10.1038/ncomms141852041-1723https://doaj.org/article/92590882b1ce4876b61d7893887a97542017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14185https://doaj.org/toc/2041-1723Crystal engineering is a powerful process for assembling complex materials but tends to require organic building blocks, which can limit stability. Here, the authors use inorganic polyoxometalates to assemble an all-inorganic metamorphic framework that can be switched between eight distinct states.Caihong ZhanJamie M. CameronDavid GabbThomas BoydRoss S. WinterLaia Vilà-NadalScott G. MitchellStefan GlatzelJoachim BreternitzDuncan H. GregoryDe-Liang LongAndrew MacdonellLeroy CroninNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Caihong Zhan
Jamie M. Cameron
David Gabb
Thomas Boyd
Ross S. Winter
Laia Vilà-Nadal
Scott G. Mitchell
Stefan Glatzel
Joachim Breternitz
Duncan H. Gregory
De-Liang Long
Andrew Macdonell
Leroy Cronin
A metamorphic inorganic framework that can be switched between eight single-crystalline states
description Crystal engineering is a powerful process for assembling complex materials but tends to require organic building blocks, which can limit stability. Here, the authors use inorganic polyoxometalates to assemble an all-inorganic metamorphic framework that can be switched between eight distinct states.
format article
author Caihong Zhan
Jamie M. Cameron
David Gabb
Thomas Boyd
Ross S. Winter
Laia Vilà-Nadal
Scott G. Mitchell
Stefan Glatzel
Joachim Breternitz
Duncan H. Gregory
De-Liang Long
Andrew Macdonell
Leroy Cronin
author_facet Caihong Zhan
Jamie M. Cameron
David Gabb
Thomas Boyd
Ross S. Winter
Laia Vilà-Nadal
Scott G. Mitchell
Stefan Glatzel
Joachim Breternitz
Duncan H. Gregory
De-Liang Long
Andrew Macdonell
Leroy Cronin
author_sort Caihong Zhan
title A metamorphic inorganic framework that can be switched between eight single-crystalline states
title_short A metamorphic inorganic framework that can be switched between eight single-crystalline states
title_full A metamorphic inorganic framework that can be switched between eight single-crystalline states
title_fullStr A metamorphic inorganic framework that can be switched between eight single-crystalline states
title_full_unstemmed A metamorphic inorganic framework that can be switched between eight single-crystalline states
title_sort metamorphic inorganic framework that can be switched between eight single-crystalline states
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/92590882b1ce4876b61d7893887a9754
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