The mechanism of supramolecular polymerization has been elucidated for an archetype organogelator molecule composed of a perylene bisimide aromatic scaffold and two amide substituents. This molecule self-assembles into elongated one-dimensional nanofibers through a cooperative nucleation–growth process. Thermodynamic and kinetic analyses have been applied to discover conditions (temperature, solvent, concentration) where the spontaneous nucleation can be retarded by trapping of the monomers in an inactive conformation, leading to lag times up to more than 1 h. The unique kinetics in the nucleation process was confirmed as a thermal hysteresis in a cycle of assembly and disassembly processes. Under appropriate conditions within the hysteresi...
The self-assembly of molecular building blocks into one-dimensional supramolecular architectures has...
A major challenge in supramolecular polymerization is controlling the stability of the polymers form...
Self-assembly provides an attractive route to functional organic materials, with properties and henc...
We have investigated the kinetic and thermodynamic supramolecular polymerizations of a series of ami...
Controlling polymorphism in molecular solids is of great interest since the properties and performan...
A new perylene bisimide (PBI), with a fluorescence quantum yield up to unity, self‐assembles into tw...
The synthesis and self-assembling features of N-annulated perylenebisimides (N-PBIs) 2-4 are reporte...
New synthetic methodologies for the formation of block copolymers have revolutionized polymer scienc...
While the mechanism of self-assembly of π-conjugated molecules has been well studied to gain control...
Seeded supramolecular polymerization (SSP) is a method that enables the controlled synthesis of supr...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Function in complex biological and non-biological supramolecular assemblies is determined by structu...
Function in complex biological and non-biological supramolecular assemblies is determined by structu...
The self-assembly of molecular building blocks into one-dimensional supramolecular architectures has...
A major challenge in supramolecular polymerization is controlling the stability of the polymers form...
Self-assembly provides an attractive route to functional organic materials, with properties and henc...
We have investigated the kinetic and thermodynamic supramolecular polymerizations of a series of ami...
Controlling polymorphism in molecular solids is of great interest since the properties and performan...
A new perylene bisimide (PBI), with a fluorescence quantum yield up to unity, self‐assembles into tw...
The synthesis and self-assembling features of N-annulated perylenebisimides (N-PBIs) 2-4 are reporte...
New synthetic methodologies for the formation of block copolymers have revolutionized polymer scienc...
While the mechanism of self-assembly of π-conjugated molecules has been well studied to gain control...
Seeded supramolecular polymerization (SSP) is a method that enables the controlled synthesis of supr...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Function in complex biological and non-biological supramolecular assemblies is determined by structu...
Function in complex biological and non-biological supramolecular assemblies is determined by structu...
The self-assembly of molecular building blocks into one-dimensional supramolecular architectures has...
A major challenge in supramolecular polymerization is controlling the stability of the polymers form...
Self-assembly provides an attractive route to functional organic materials, with properties and henc...