We describe, for a single platinum complex bearing a dipeptide moiety, a solvent-driven interconversion from twisted to straight micrometric assembled structures with different chirality. The photophysical and morphological properties of the aggregates have been investigated as well as the role of the media and concentration. A real-time visualization of the solvent-driven interconversion processes has been achieved by confocal microscopy. Finally, atomistic and coarse-grained simulations, providing results consistent with the experimental observations, allow to obtain a molecular-level insight into the interesting solvent-responsive behavior of this system
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
Artificial light-harvesting systems have until now not been able to self-assemble into structures wi...
Smart light-responsive supramolecular materials have been extensively investigated in the past decad...
We describe, for a single platinum complex bearing a dipeptide moiety, a solvent-driven interconvers...
Self-assembly relies on the ability of smaller and discrete entities to spontaneously arrange into m...
The self-assembly of chemical entities represents a very attractive way to create a large variety of...
The construction of macroscopic chiral luminescent aggregates with well-defined structures not only ...
We report a new paradigm for the rational design of chiral nanostructures that is based on the hiera...
The involvement of metal ions within the self-assembly spontaneously occurring in surfactant-based s...
A supramolecular assembly is a complex of molecules held together by noncovalent interactions. The p...
Luminescent platinum complexes have attractive chemical and photophysical properties such as high st...
Constructing artificial helical structures through hierarchical self-assembly and exploring the unde...
Understanding the precise molecular arrangement of chiral supramolecular polymers is essential not o...
Precise control over helical chirality and dimensions of molecular self-assemblies, a remaining chal...
ConspectusChirality exists as a ubiquitous phenomenon in nature, from molecular level l-amino acids,...
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
Artificial light-harvesting systems have until now not been able to self-assemble into structures wi...
Smart light-responsive supramolecular materials have been extensively investigated in the past decad...
We describe, for a single platinum complex bearing a dipeptide moiety, a solvent-driven interconvers...
Self-assembly relies on the ability of smaller and discrete entities to spontaneously arrange into m...
The self-assembly of chemical entities represents a very attractive way to create a large variety of...
The construction of macroscopic chiral luminescent aggregates with well-defined structures not only ...
We report a new paradigm for the rational design of chiral nanostructures that is based on the hiera...
The involvement of metal ions within the self-assembly spontaneously occurring in surfactant-based s...
A supramolecular assembly is a complex of molecules held together by noncovalent interactions. The p...
Luminescent platinum complexes have attractive chemical and photophysical properties such as high st...
Constructing artificial helical structures through hierarchical self-assembly and exploring the unde...
Understanding the precise molecular arrangement of chiral supramolecular polymers is essential not o...
Precise control over helical chirality and dimensions of molecular self-assemblies, a remaining chal...
ConspectusChirality exists as a ubiquitous phenomenon in nature, from molecular level l-amino acids,...
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
Artificial light-harvesting systems have until now not been able to self-assemble into structures wi...
Smart light-responsive supramolecular materials have been extensively investigated in the past decad...