Efficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites

The separation of xylene isomers remains a great challenge in industry due to their similar molecular structure and physical properties. Here the authors demonstrate adaptively molecular discrimination of xylene isomers by employing a NbOF5 2−-pillared metal–organic framework with rotational anionic...

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Autores principales: Xili Cui, Zheng Niu, Chuan Shan, Lifeng Yang, Jianbo Hu, Qingju Wang, Pui Ching Lan, Yijian Li, Lukasz Wojtas, Shengqian Ma, Huabin Xing
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/d879e627e88746ffb9f695d420ccb3b6
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spelling oai:doaj.org-article:d879e627e88746ffb9f695d420ccb3b62021-12-02T17:32:58ZEfficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites10.1038/s41467-020-19209-72041-1723https://doaj.org/article/d879e627e88746ffb9f695d420ccb3b62020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19209-7https://doaj.org/toc/2041-1723The separation of xylene isomers remains a great challenge in industry due to their similar molecular structure and physical properties. Here the authors demonstrate adaptively molecular discrimination of xylene isomers by employing a NbOF5 2−-pillared metal–organic framework with rotational anionic sites.Xili CuiZheng NiuChuan ShanLifeng YangJianbo HuQingju WangPui Ching LanYijian LiLukasz WojtasShengqian MaHuabin XingNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xili Cui
Zheng Niu
Chuan Shan
Lifeng Yang
Jianbo Hu
Qingju Wang
Pui Ching Lan
Yijian Li
Lukasz Wojtas
Shengqian Ma
Huabin Xing
Efficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites
description The separation of xylene isomers remains a great challenge in industry due to their similar molecular structure and physical properties. Here the authors demonstrate adaptively molecular discrimination of xylene isomers by employing a NbOF5 2−-pillared metal–organic framework with rotational anionic sites.
format article
author Xili Cui
Zheng Niu
Chuan Shan
Lifeng Yang
Jianbo Hu
Qingju Wang
Pui Ching Lan
Yijian Li
Lukasz Wojtas
Shengqian Ma
Huabin Xing
author_facet Xili Cui
Zheng Niu
Chuan Shan
Lifeng Yang
Jianbo Hu
Qingju Wang
Pui Ching Lan
Yijian Li
Lukasz Wojtas
Shengqian Ma
Huabin Xing
author_sort Xili Cui
title Efficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites
title_short Efficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites
title_full Efficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites
title_fullStr Efficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites
title_full_unstemmed Efficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites
title_sort efficient separation of xylene isomers by a guest-responsive metal–organic framework with rotational anionic sites
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/d879e627e88746ffb9f695d420ccb3b6
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AT chuanshan efficientseparationofxyleneisomersbyaguestresponsivemetalorganicframeworkwithrotationalanionicsites
AT lifengyang efficientseparationofxyleneisomersbyaguestresponsivemetalorganicframeworkwithrotationalanionicsites
AT jianbohu efficientseparationofxyleneisomersbyaguestresponsivemetalorganicframeworkwithrotationalanionicsites
AT qingjuwang efficientseparationofxyleneisomersbyaguestresponsivemetalorganicframeworkwithrotationalanionicsites
AT puichinglan efficientseparationofxyleneisomersbyaguestresponsivemetalorganicframeworkwithrotationalanionicsites
AT yijianli efficientseparationofxyleneisomersbyaguestresponsivemetalorganicframeworkwithrotationalanionicsites
AT lukaszwojtas efficientseparationofxyleneisomersbyaguestresponsivemetalorganicframeworkwithrotationalanionicsites
AT shengqianma efficientseparationofxyleneisomersbyaguestresponsivemetalorganicframeworkwithrotationalanionicsites
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