Supramolecular block copolymers are becoming attractive materials in nascent optoelectronic and catalytic technologies. However, their dynamic nature precludes the straightforward tuning and analysis of the polymer’s structure. Here we report the elucidation on the microstructure of triarylamine triamide-based supramolecular block copolymers through a comprehensive battery of spectroscopic, theoretical, and super-resolution microscopic techniques. Via spectroscopic analysis we demonstrate that the direct mixing of preassembled homopolymers and the copolymerization induced by slow cooling of monomers lead to the formation of the same copolymer’s architecture. The small but pronounced deviation of the experimental spectra from the linear comb...
Supramolecular copolymers formed by the noncovalent synthesis of multiple components expand the comp...
Block copolymers spontaneously assemble into nanoscale structures (10-9 m), which makes them suitabl...
The self-assembly in diblock copolymer-based supramolecules, obtained by hydrogen bonding short side...
Supramolecular block copolymers are becoming attractive materials in nascent optoelectronic and cata...
Block copolymers are known to spontaneously form ordered structures at the nano-to mesoscale. Althou...
Involving supramolecular chemistry in self-assembling block copolymer systems enables design of comp...
Elucidating the microstructure of supramolecular copolymers remains challenging, despite the progres...
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 goal of this thesis was to understand the supramolecular organization and the possible dynamic r...
The coassembly of different building blocks into supramolecular copolymers provides a promising aven...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
Involving supramolecular chemistry in self-assembling block copolymer systems enables design of macr...
Supramolecular copolymers formed by the noncovalent synthesis of multiple components expand the comp...
Block copolymers spontaneously assemble into nanoscale structures (10-9 m), which makes them suitabl...
The self-assembly in diblock copolymer-based supramolecules, obtained by hydrogen bonding short side...
Supramolecular block copolymers are becoming attractive materials in nascent optoelectronic and cata...
Block copolymers are known to spontaneously form ordered structures at the nano-to mesoscale. Althou...
Involving supramolecular chemistry in self-assembling block copolymer systems enables design of comp...
Elucidating the microstructure of supramolecular copolymers remains challenging, despite the progres...
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 goal of this thesis was to understand the supramolecular organization and the possible dynamic r...
The coassembly of different building blocks into supramolecular copolymers provides a promising aven...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
Involving supramolecular chemistry in self-assembling block copolymer systems enables design of macr...
Supramolecular copolymers formed by the noncovalent synthesis of multiple components expand the comp...
Block copolymers spontaneously assemble into nanoscale structures (10-9 m), which makes them suitabl...
The self-assembly in diblock copolymer-based supramolecules, obtained by hydrogen bonding short side...