Supramolecular copolymers formed by the noncovalent synthesis of multiple components expand the complexity of functional molecular systems. However, varying the composition and microstructure of copolymers through tuning the interactions between building blocks remains a challenge. Here, we report a remarkable discovery of the temperature-dependent supramolecular copolymerization of the two chiral monomers 4,4′,4″-(1,3,5-triazine-2,4,6-triyl)tribenzamide (S-T) and 4,4′,4″-(benzene-1,3,5-triyl)tribenzamide (S-B). We first demonstrate in the homopolymerization of the two individual monomers that a subtle change from the central triazine to benzene in the chemical structure of the monomers significantly affects the properties of the resulting ...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Recent investigations of supramolecular polymers based on chiral triphenylene-2,6,10-tricarboxamides...
Here, we report on the strong amplification of chirality observed in supramolecular polymers consist...
Supramolecular copolymers formed by the noncovalent synthesis of multiple components expand the comp...
Supramolecular copolymers have typically been studied in the extreme cases, such as self-sorting or ...
Elucidating the microstructure of supramolecular copolymers remains challenging, despite the progres...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
\u3cp\u3eIn the field of supramolecular (co)polymerizations, the ability to predict and control the ...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
Supramolecular copolymerizations offer attractive options to introduce structural and functional div...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
Recent investigations of supramolecular polymers based on chiral triphenylene-2,6,10-tricarboxamides...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Recent investigations of supramolecular polymers based on chiral triphenylene-2,6,10-tricarboxamides...
Here, we report on the strong amplification of chirality observed in supramolecular polymers consist...
Supramolecular copolymers formed by the noncovalent synthesis of multiple components expand the comp...
Supramolecular copolymers have typically been studied in the extreme cases, such as self-sorting or ...
Elucidating the microstructure of supramolecular copolymers remains challenging, despite the progres...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
\u3cp\u3eIn the field of supramolecular (co)polymerizations, the ability to predict and control the ...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
Supramolecular copolymerizations offer attractive options to introduce structural and functional div...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
Recent investigations of supramolecular polymers based on chiral triphenylene-2,6,10-tricarboxamides...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Recent investigations of supramolecular polymers based on chiral triphenylene-2,6,10-tricarboxamides...
Here, we report on the strong amplification of chirality observed in supramolecular polymers consist...