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Cited 177 time in webofscience Cited 181 time in scopus
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Coordination polymer gels with important environmental and biological applications

Authors
Jung, Jong HwaLee, Ji HaSilverman, Julian R.John, George
Issue Date
2013
Publisher
ROYAL SOC CHEMISTRY
Citation
CHEMICAL SOCIETY REVIEWS, v.42, no.3, pp 924 - 936
Pages
13
Indexed
SCI
SCIE
SCOPUS
Journal Title
CHEMICAL SOCIETY REVIEWS
Volume
42
Number
3
Start Page
924
End Page
936
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/21796
DOI
10.1039/c2cs35407a
ISSN
0306-0012
1460-4744
Abstract
Coordination Polymer Gels (CPGs) constitute a subset of solid-like metal ion and bridging organic ligand structures (similar to metal-organic frameworks) that form multi-dimensional networks through a trapped solvent as a result of non-covalent interactions. While physical properties of these gels are similar to conventional high molecular weight organic polymer gels, coordination polymer gel systems are often fully reversible and can be assembled and disassembled in the presence of additional energy (heat, sonication, shaking) to give a solution of solvated gelators. Compared to gels resulting from purely organic self-assembled low molecular weight gelators, metal ions incorporated into the fibrilar networks spanning the bulk solvent can impart CPGs with added functionalities. The solid/liquid nature of the gels allows for species to migrate through the gel system and interact with metals, ligands, and the solvent. Chemosensing, catalysis, fluorescence, and drug-delivery applications are some of the many potential uses for these dynamic systems, taking advantage of the metal ion's coordination, the organic polydentate ligand's orientation and functionality, or a combination of these properties. By fine tuning these systems through metal ion and ligand selection and by directing self-assembly with external stimuli the rational synthesis of practical systems can be envisaged.
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