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Mesoporous Metal‐Organic Frameworks with Size‐tunable Cages: Selective CO 2 Uptake, Encapsulation of Ln 3+ Cations for Luminescence, and Column‐Chromatographic Dye Separation

Mesoporous Metal‐Organic Frameworks with Size‐tunable Cages: Selective CO 2 Uptake, Encapsulation... Three mesoporous metal‐organic frameworks (MOFs) with rare corundum‐type topology and size‐tailored cages are constructed by length‐extendable tetratopic ligands. All the MOFs show selective CO2 uptake over N2 and their CO2 uptake capabilities are discriminated with different cage sizes. The MOFs can serve as hosts for encapsulating extra‐framework lanthanide cations, and be applicable in column‐chromatographic separation for large dye molecules. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Advanced Materials Wiley

Mesoporous Metal‐Organic Frameworks with Size‐tunable Cages: Selective CO 2 Uptake, Encapsulation of Ln 3+ Cations for Luminescence, and Column‐Chromatographic Dye Separation

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References (62)

Publisher
Wiley
Copyright
Copyright © 2011 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim
ISSN
0935-9648
eISSN
1521-4095
DOI
10.1002/adma.201102880
pmid
21989794
Publisher site
See Article on Publisher Site

Abstract

Three mesoporous metal‐organic frameworks (MOFs) with rare corundum‐type topology and size‐tailored cages are constructed by length‐extendable tetratopic ligands. All the MOFs show selective CO2 uptake over N2 and their CO2 uptake capabilities are discriminated with different cage sizes. The MOFs can serve as hosts for encapsulating extra‐framework lanthanide cations, and be applicable in column‐chromatographic separation for large dye molecules.

Journal

Advanced MaterialsWiley

Published: Nov 16, 2011

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