A flexible interpenetrating coordination framework with a bimodal porous functionality
- PMID: 17259990
- DOI: 10.1038/nmat1827
A flexible interpenetrating coordination framework with a bimodal porous functionality
Abstract
Introducing a functional part into open-framework materials that tunes the pore size/shape and overall porous activity will open new routes in framework engineering and in the fabrication of new materials. We have designed and synthesized a bimodal microporous twofold interpenetrating network {[Ni(bpe)2(N(CN)2)](N(CN)2)(5H2O)}n (1), with two types of channel for anionic N(CN)2- (dicyanamide) and neutral water molecules, respectively. The dehydrated framework provides a dual function of specific anion exchange of free N(CN)2- for the smaller N3- anions and selective gas sorption. The N3-exchanged framework leads to a dislocation of the mutual positions of the two interpenetrating frameworks, resulting in an increase in the effective pore size in one of the counterparts of the channels and a higher accommodation of adsorbate than in the as-synthesized framework (1), showing the first case of controlled sorption properties in flexible porous frameworks.
Comment in
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Metal-organic frameworks: a tale of two entanglements.Nat Mater. 2007 Feb;6(2):92-3. doi: 10.1038/nmat1824. Nat Mater. 2007. PMID: 17268491 No abstract available.
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