The coassembly of two oligo-(p-phenylene vinylene) (OPV) derivatives with different sizes and opposite chirality is studied. Short R-chiral ROPV3 molecules experience a high energetic mismatch penalty when incorporated in helices formed by long S-chiral SOPV4 molecules. In contrast, SOPV4 easily coassembles into helices dominated by ROPV3. As a result, the coassembly behavior (i.e., mixing or phase separation of ROPV3 and SOPV4 within the assemblies) highly depends on the ratio between both molecular building blocks. By a combination of experiments and models, the assembly pathways are analyzed. Furthermore, the model allows identifying key parameters in the coassembly behavior, such as the cooperativity and the mismatch penalties. The mode...
The self-assembly of two enantiomerically pure hexa(oligo (p-phenylene vinylene))-substituted benzen...
The understanding of multi-component mixtures of self-assembling molecules under thermodynamic equil...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
The coassembly of two oligo-(p-phenylene vinylene) (OPV) derivatives with different sizes and opposi...
The present account describes the summary of the recent developments to the design of helical self-a...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
The understanding of multi-component mixtures of self-assembling molecules under thermodynamic equil...
The design of supramolecular motifs with tuneable stability and adjustable supramolecular polymerisa...
Supramolecular and covalent polymers share multiple structural effects such as chiral amplification,...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
In Chapter 1 supramolecular polymerization of small molecules is introduced and exemplified. The sel...
Here, we report an engineering approach toward multicomponent self-assembly processes by developing ...
The self-assembly of two enantiomerically pure hexa(oligo (p-phenylene vinylene))-substituted benzen...
The understanding of multi-component mixtures of self-assembling molecules under thermodynamic equil...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
The coassembly of two oligo-(p-phenylene vinylene) (OPV) derivatives with different sizes and opposi...
The present account describes the summary of the recent developments to the design of helical self-a...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
The understanding of multi-component mixtures of self-assembling molecules under thermodynamic equil...
The design of supramolecular motifs with tuneable stability and adjustable supramolecular polymerisa...
Supramolecular and covalent polymers share multiple structural effects such as chiral amplification,...
Supramolecular copolymers, non-covalent analogues of synthetic copolymers, constitute a new and prom...
In Chapter 1 supramolecular polymerization of small molecules is introduced and exemplified. The sel...
Here, we report an engineering approach toward multicomponent self-assembly processes by developing ...
The self-assembly of two enantiomerically pure hexa(oligo (p-phenylene vinylene))-substituted benzen...
The understanding of multi-component mixtures of self-assembling molecules under thermodynamic equil...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...