We report an implicit-solvent coarse-grained (CG) model for a water-soluble 1,3,S-benzenetricarboxamide (BTA) supramolecular polymer. The technical advances guaranteed by this CG model allow simulation of the self-assembly of 1000 BTA monomers and easy variation of the BTA concentration into the system down to experimental dilute conditions. In this way, we can monitor the mechanism of supramolecular polymerization as a function of the concentration at submolecular resolution exceeding the microsecond time scale. While increasing the concentration produces rapid formation of large disordered clusters that are then converted into BTA fibers, moving to very dilute concentrations favors early ordering of the oligomers in solution even at small...
While a great deal of knowledge on the roles of hydrogen bonding and hydrophobicity in proteins has ...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
AbstractDespite numerous reports on nucleated supramolecular polymerization, the molecular origin of...
Supramolecular polymers, formed via noncovalent self-assembly of elementary monomers, are extremely ...
A coarse-grained (CG) force field to model the self-assembly of benzene-1,3,5-tricarboxamide (BTA) c...
While a great deal of knowledge on the roles of hydrogen bonding and hydrophobicity in proteins has ...
As a first step to understand the role of molecular or chemical polydispersity in self-assembly, we ...
The rational design of supramolecular polymers that can adapt or respond in time to specific stimuli...
Supramolecular building blocks assembling into helical aggregates are ubiquitous in the current lite...
Despite numerous reports on nucleated supramolecular polymerization, the molecular origin of the pro...
The influence of the ratio between poor and good solvent on the stability and dynamics of supramolec...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
While a great deal of knowledge on the roles of hydrogen bonding and hydrophobicity in proteins has ...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
AbstractDespite numerous reports on nucleated supramolecular polymerization, the molecular origin of...
Supramolecular polymers, formed via noncovalent self-assembly of elementary monomers, are extremely ...
A coarse-grained (CG) force field to model the self-assembly of benzene-1,3,5-tricarboxamide (BTA) c...
While a great deal of knowledge on the roles of hydrogen bonding and hydrophobicity in proteins has ...
As a first step to understand the role of molecular or chemical polydispersity in self-assembly, we ...
The rational design of supramolecular polymers that can adapt or respond in time to specific stimuli...
Supramolecular building blocks assembling into helical aggregates are ubiquitous in the current lite...
Despite numerous reports on nucleated supramolecular polymerization, the molecular origin of the pro...
The influence of the ratio between poor and good solvent on the stability and dynamics of supramolec...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
While a great deal of knowledge on the roles of hydrogen bonding and hydrophobicity in proteins has ...
Multicomponent supramolecular polymers are a versatile platform to prepare functional architectures,...
AbstractDespite numerous reports on nucleated supramolecular polymerization, the molecular origin of...