A major challenge in supramolecular polymerization is controlling the stability of the polymers formed, that is, controlling the rate of monomer exchange in the equilibrium between monomer and polymer. The exchange dynamics of supramolecular polymers based on benzene-1,3,5-tricarboxamide (BTA) can be regulated by copolymerizing molecules with dendronized (dBTA) and linear (nBTA) ethylene glycol-based water-soluble side chains. Whereas nBTAs form long nanofibers in water, dBTAs do not polymerize, forming instead small spherical aggregates. The copolymerization of the two BTAs results in long nanofibers. The exchange dynamics of both the BTA monomers in the copolymer are significantly slowed down in the mixed systems, leading to a more stable...
Supramolecular polymers, formed via noncovalent self-assembly of elementary monomers, are extremely ...
International audienceThe design and the characterization of supramolecular additives to control the...
Despite numerous reports on nucleated supramolecular polymerization, the molecular origin of the pro...
A major challenge in supramolecular polymerization is controlling the stability of the polymers form...
A major challenge in supramolecular polymerization is controlling the stability of the polymers form...
\u3cp\u3eIn the field of supramolecular (co)polymerizations, the ability to predict and control the ...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
The research field of supramolecular polymerization has dramatically progressed in the last three de...
The research field of supramolecular polymerization has dramatically progressed in the last three de...
Elucidating the microstructure of supramolecular copolymers remains challenging, despite the progres...
The design and the characterization of supramolecular additives to control the chain length of benze...
The fast dynamics occurring in natural processes increases the difficulty of creating biomaterials c...
Supramolecular polymers, formed via noncovalent self-assembly of elementary monomers, are extremely ...
International audienceThe design and the characterization of supramolecular additives to control the...
Despite numerous reports on nucleated supramolecular polymerization, the molecular origin of the pro...
A major challenge in supramolecular polymerization is controlling the stability of the polymers form...
A major challenge in supramolecular polymerization is controlling the stability of the polymers form...
\u3cp\u3eIn the field of supramolecular (co)polymerizations, the ability to predict and control the ...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
The research field of supramolecular polymerization has dramatically progressed in the last three de...
The research field of supramolecular polymerization has dramatically progressed in the last three de...
Elucidating the microstructure of supramolecular copolymers remains challenging, despite the progres...
The design and the characterization of supramolecular additives to control the chain length of benze...
The fast dynamics occurring in natural processes increases the difficulty of creating biomaterials c...
Supramolecular polymers, formed via noncovalent self-assembly of elementary monomers, are extremely ...
International audienceThe design and the characterization of supramolecular additives to control the...
Despite numerous reports on nucleated supramolecular polymerization, the molecular origin of the pro...