| Literature DB >> 31436358 |
Ting Liang1, Dominique Collin2, Melodie Galerne1, Gad Fuks1, Andreas Vargas Jentzsch1, Mounir Maaloum1, Alain Carvalho2, Nicolas Giuseppone1, Emilie Moulin1.
Abstract
C3 -Symmetric triarylamine trisamides (TATAs), decorated with three norbornene end groups, undergo supramolecular polymerization and further gelation by π-π stacking and hydrogen bonding of their TATA cores. By using subsequent ring-opening metathesis polymerization, these physical gels are permanently crosslinked into chemical gels. Detailed comparisons of the supramolecular stacks in solution, in the physical gel, and in the chemical gel states, are performed by optical spectroscopies, electronic spectroscopies, atomic force microscopy, electronic paramagnetic resonance spectroscopy, X-ray scattering, electronic transport measurements, and rheology. The results presented here clearly evidence that the core structure of the functional supramolecular polymers can be precisely retained during the covalent capture whereas the mechanical properties of the gels are concomitantly improved, with an increase of their storage modulus by two orders of magnitude.Entities:
Keywords: ROMP; gels; rheology; supramolecular polymers; triarylamines
Year: 2019 PMID: 31436358 DOI: 10.1002/chem.201902404
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236