1520-6106We report a detailed structural investigation of supramolecular polymers formed by hydrogen bonded self-assembly of bis-urea monomers. The careful exploration of the energy landscape by molecular mechanics/molecular dynamics (MM/MD) simulations has allowed us to identify three distinct self-assembled structures of similar stabilities. These structures have been compared to X-ray crystal data. We observe that a slight change in the molecular structure can favor a particular structure over the others. Detailed analysis shows that hydrogen bonds stabilize all three structures to a similar extent. Therefore, it is the interactions among the lateral substituents, and with the filament environment, that are the decisive factors in the co...
Computational quantum chemical tools were applied to investigate important driving forces underlying...
Poly(urethane urea)s, PUURs, are widely used in both industrial and biological applications because ...
Despite numerous reports on nucleated supramolecular polymerization, the molecular origin of the pro...
International audienceIntroduction of competing interactions in the design of a supramolecular polym...
International audiencehe phenylurea moiety is a ubiquitous synthon in supramolecular chemis...
International audienceA new bis-urea based supramolecular polymer is reported and shown by...
The connection of molecular monomers through non-covalent interaction (e.g. hydrogen bonding, π-π in...
Model compounds of unsymmetrical bis-ureas have been designed and synthesised to investigate and fur...
Multiple hydrogen bonds are used to self-assemble monomeric units into a polymer chain. The strength...
By combining atomic force microscopy experiments and full-atomistic computer simulations, we compare...
International audienceN,N′-dialkyl ureas in non-polar solvents self-assemble as hydrogen bonded chai...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
The article discusses the development and properties of supramolecular polymers based on quadruple h...
While a great deal of knowledge on the roles of hydrogen bonding and hydrophobicity in proteins has ...
Computational quantum chemical tools were applied to investigate important driving forces underlying...
Poly(urethane urea)s, PUURs, are widely used in both industrial and biological applications because ...
Despite numerous reports on nucleated supramolecular polymerization, the molecular origin of the pro...
International audienceIntroduction of competing interactions in the design of a supramolecular polym...
International audiencehe phenylurea moiety is a ubiquitous synthon in supramolecular chemis...
International audienceA new bis-urea based supramolecular polymer is reported and shown by...
The connection of molecular monomers through non-covalent interaction (e.g. hydrogen bonding, π-π in...
Model compounds of unsymmetrical bis-ureas have been designed and synthesised to investigate and fur...
Multiple hydrogen bonds are used to self-assemble monomeric units into a polymer chain. The strength...
By combining atomic force microscopy experiments and full-atomistic computer simulations, we compare...
International audienceN,N′-dialkyl ureas in non-polar solvents self-assemble as hydrogen bonded chai...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
The article discusses the development and properties of supramolecular polymers based on quadruple h...
While a great deal of knowledge on the roles of hydrogen bonding and hydrophobicity in proteins has ...
Computational quantum chemical tools were applied to investigate important driving forces underlying...
Poly(urethane urea)s, PUURs, are widely used in both industrial and biological applications because ...
Despite numerous reports on nucleated supramolecular polymerization, the molecular origin of the pro...