Issue 11, 2017

Cross-linking Zr-based metal–organic polyhedra via postsynthetic polymerization

Abstract

Metal organic polyhedra (MOPs) have potential as supramolecular building blocks, but utilizing MOPs for postsynthetic polymerization has not been explored. Although MOPs with flexible organic moieties have been recently reported to target enhanced processability, permanent porosity has not been demonstrated. Here, a novel synthetic strategy involving the cross-linking of MOPs via a covalent bond is demonstrated by exploiting a condensation reaction between the MOP and flexible organic linkers. An amine-functionalized Zr-based MOP is cross-linked with acyl chloride linkers in the crystalline state to form cross-linked MOPs. The condensation reaction results in a cross-linked system without significant changes to the structure of the Zr-based MOP. Such cross-linked MOPs provide a microporous tetrahedral cage based on gas sorption analysis. This cross-linking strategy highlights the potential of MOPs as building blocks and provides access to a new class of porous material.

Graphical abstract: Cross-linking Zr-based metal–organic polyhedra via postsynthetic polymerization

Supplementary files

Article information

Article type
Edge Article
Submitted
02 Sep 2017
Accepted
22 Sep 2017
First published
25 Sep 2017
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2017,8, 7765-7771

Cross-linking Zr-based metal–organic polyhedra via postsynthetic polymerization

D. Nam, J. Huh, J. Lee, J. H. Kwak, H. Y. Jeong, K. Choi and W. Choe, Chem. Sci., 2017, 8, 7765 DOI: 10.1039/C7SC03847J

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