Multi-component systems often display convoluted behavior, pathway complexity and coupled equilibria. In recent years, several ways to control complex systems by manipulating the subtle balances of interaction energies between the individual components have been explored and thereby shifting the equilibrium between different aggregate states. Here we show the enantioselective chain-capping and dilution-induced supramolecular polymerization with a Zn2+-porphyrin-based supramolecular system when going from long, highly cooperative supramolecular polymers to short, disordered aggregates by adding a monotopic Mn3+-porphyrin monomer. When mixing the zinc and manganese centered monomers, the Mn3+-porphyrins act as chain-cappers for Zn2+-porphyrin...
As part of an ongoing study to construct a molecular Turing machine in which a polymer chain is enco...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Pathway complexity in supramolecular polymerization has recently sparked interest as a method to ge...
Multi-component systems often display convoluted behavior, pathway complexity and coupled equilibria...
Pathway complexity in supramolecular polymerization has recently sparked interest as a method to gen...
The self-assembly of organic molecules offers an attractive bottom-up approach to create nano-meter ...
The correlation between molecular structure and mechanism of supramolecular polymerizations is a top...
Complexity in supramolecular polymer systems arises from interactions between different components, ...
Raw research data supporting the article E. Weyandt, L. Leanza, R. Capelli, G. M. Pavan, G. Vantomme...
We present our results on the mixing of different porphyrin molecules in supramolecular assemblies. ...
Biomolecular systems serve as an inspiration for the creation of multicomponent synthetic supramolec...
The aggregation of achiral sulfonatophenyl- and phenyl-meso-substituted diprotonated porphyrins to c...
As part of an ongoing study to construct a molecular Turing machine in which a polymer chain is enco...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Pathway complexity in supramolecular polymerization has recently sparked interest as a method to ge...
Multi-component systems often display convoluted behavior, pathway complexity and coupled equilibria...
Pathway complexity in supramolecular polymerization has recently sparked interest as a method to gen...
The self-assembly of organic molecules offers an attractive bottom-up approach to create nano-meter ...
The correlation between molecular structure and mechanism of supramolecular polymerizations is a top...
Complexity in supramolecular polymer systems arises from interactions between different components, ...
Raw research data supporting the article E. Weyandt, L. Leanza, R. Capelli, G. M. Pavan, G. Vantomme...
We present our results on the mixing of different porphyrin molecules in supramolecular assemblies. ...
Biomolecular systems serve as an inspiration for the creation of multicomponent synthetic supramolec...
The aggregation of achiral sulfonatophenyl- and phenyl-meso-substituted diprotonated porphyrins to c...
As part of an ongoing study to construct a molecular Turing machine in which a polymer chain is enco...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Pathway complexity in supramolecular polymerization has recently sparked interest as a method to ge...