Self-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity

Porosity in metal–organic materials typically relies on highly ordered crystalline networks, which hinders material processing and morphological control. Here, the authors use metal–organic polyhedra as porous monomers in supramolecular polymerization to produce colloidal spheres and gels with intri...

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Autores principales: Arnau Carné-Sánchez, Gavin A. Craig, Patrick Larpent, Takashi Hirose, Masakazu Higuchi, Susumu Kitagawa, Kenji Matsuda, Kenji Urayama, Shuhei Furukawa
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/4967dda1a1874e4db81e40a9e8d53d19
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spelling oai:doaj.org-article:4967dda1a1874e4db81e40a9e8d53d192021-12-02T16:49:17ZSelf-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity10.1038/s41467-018-04834-02041-1723https://doaj.org/article/4967dda1a1874e4db81e40a9e8d53d192018-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-04834-0https://doaj.org/toc/2041-1723Porosity in metal–organic materials typically relies on highly ordered crystalline networks, which hinders material processing and morphological control. Here, the authors use metal–organic polyhedra as porous monomers in supramolecular polymerization to produce colloidal spheres and gels with intrinsic microporosity.Arnau Carné-SánchezGavin A. CraigPatrick LarpentTakashi HiroseMasakazu HiguchiSusumu KitagawaKenji MatsudaKenji UrayamaShuhei FurukawaNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-8 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Arnau Carné-Sánchez
Gavin A. Craig
Patrick Larpent
Takashi Hirose
Masakazu Higuchi
Susumu Kitagawa
Kenji Matsuda
Kenji Urayama
Shuhei Furukawa
Self-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity
description Porosity in metal–organic materials typically relies on highly ordered crystalline networks, which hinders material processing and morphological control. Here, the authors use metal–organic polyhedra as porous monomers in supramolecular polymerization to produce colloidal spheres and gels with intrinsic microporosity.
format article
author Arnau Carné-Sánchez
Gavin A. Craig
Patrick Larpent
Takashi Hirose
Masakazu Higuchi
Susumu Kitagawa
Kenji Matsuda
Kenji Urayama
Shuhei Furukawa
author_facet Arnau Carné-Sánchez
Gavin A. Craig
Patrick Larpent
Takashi Hirose
Masakazu Higuchi
Susumu Kitagawa
Kenji Matsuda
Kenji Urayama
Shuhei Furukawa
author_sort Arnau Carné-Sánchez
title Self-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity
title_short Self-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity
title_full Self-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity
title_fullStr Self-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity
title_full_unstemmed Self-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity
title_sort self-assembly of metal–organic polyhedra into supramolecular polymers with intrinsic microporosity
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/4967dda1a1874e4db81e40a9e8d53d19
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