Brassinne, Jérémy
[UCL]
Fustin, Charles-André
[UCL]
Gohy, Jean-François
[UCL]
In the past few years, combining supramolecular and macromolecular chemistries has become of great interest to yield dynamic and responsive assemblies with self-restructuring abilities. Among them, polymer networks, that are held together by one or a combination of supramolecular interactions, offer new possibilities to scientists for the creation of artificial materials with selfhealing properties. In particular, incorporating coordination complexes into polymeric architectures opens up the possibility of imparting the physicochemical properties of both partners to the resulting material. Here, recent achievements in the field of supramolecular gels that are formed via self-assembly of oligo- and polymeric units through reversible metal–ligand interactions are reviewed. The different strategies and routes for the elaboration of those materials are reported as well as the properties that the coordination centers confer to the supramolecular assemblies.
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Bibliographic reference |
Brassinne, Jérémy ; Fustin, Charles-André ; Gohy, Jean-François. Polymer Gels Constructed Through Metal–Ligand Coordination. In: Journal of Inorganic and Organometallic Polymers and Materials, Vol. 23, no.1, p. 24-40 (January 2013) |
Permanent URL |
http://hdl.handle.net/2078.1/128531 |