5. Conclusion
Numerous self-healing supramolecular polymers have been developed in the laboratory. A common feature of these polymers is that they are intrinsically self-healing, i.e. they heal by virtue of their chemical properties without the need for a separately stored healing agent. Some polymers require an external stimulus, such as temperature, to heal themselves, while others are self-repairing. In the latter case, it's important that polymers have a low glass transition temperature. This guarantees the mobility and dynamics of the molecules, which in turn promotes self-repair. However, this temperature must not be too low to ensure that free non-covalent bonds remain on the surface of the cut area to enable healing. For polymers with a semi-crystalline or crystalline structure, it is additionally necessary to remove the crystallinity of the polymer in the fractured zone, to allow the non-covalent...
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Conclusion
Bibliography
Bibliography
- (1) - - PlasticsEurope http://www.plasticseurope.fr/industrie- du-plastique/donnees-du-marche.aspx .
- (2) - -...
Key players
French actor :
Matière Molle et Chimie, ESPCI ParisTech – CNRS, UMR-7167, PSL Research University, 10 rue Vauquelin, 75005 Paris, France
Other players worldwide :
Institute for Complex Molecular Systems and Laboratory of Macromolecular and Organic Chemistry, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands...
Patents
Elastic materials FR2882061
Supramolecular polymers from low-melting, easy processable building blocks EP 2087027
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