Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic functional materials for light-harvesting and energy transport. The design is complicated by the fact that structure-property relationships are hard to establish, because the molecular packing results from a delicate balance of interactions and the excitonic properties that dictate the optics and excited state dynamics, in turn sensitively depend on this packing. Here we show how an iterative multiscale approach combining molecular dynamics and quantum mechanical exciton modeling can be used to obtain accurate insight into the packing of thousands of cyanine dye molecules in a complex double-walled tubular aggregate in close interaction with ...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Supramolecular aggregates of synthetic dye molecules offer great perspectives to prepare biomimetic ...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Using a first-principles approach, we calculate electronic and optical properties of molecular aggre...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...
Molecular aggregates of dye molecules offer great possibilities to develop nanoscale functional mate...