Delocalization of excitons promoted by electronic coupling between clusters or quantum dots (QD) changes the dynamical processes in nanostructured aggregates enhancing energy transport. A spectroscopic shift of the absorption spectrum upon QD aggregation is commonly observed and ascribed to quantum mechanical coupling between neighbouring dots but also to exciton delocalization over the sulphur-based ligand shell or to other mechanisms as a change in the dielectric constant of the surrounding medium. We address the question of electronic coupling and exciton delocalization in nanocrystal aggregates by performing all-atom electronic structure calculations in models of colloidal QD dimers. The relation between spectral shift, interdot couplin...
The study of the photophysical properties of nanoscale materials has been a substantial research are...
Displacement of cadmium oleate (Cd(oleate)<sub>2</sub>) ligands for the exciton-delocalizing ligand...
Colloidal quantum dots (QDs) stand among the most attractive light-harvesting materials to be exploi...
Delocalization of excitons promoted by electronic coupling between clusters or quantum dots (QD) cha...
Abstract: Semiconductor nanocrystals have long been studied as alternatives to traditional bulk semi...
International audienceWithin semiconductor quantum dots (QDs), exciton recombination processes are n...
Currently, intensive research efforts focus on the fabrication of meso-structures of assembled collo...
Nanocomposites of colloidal quantum dots (QDs) integrated into conjugated polymers (CPs) are key to ...
peer reviewedInterdot coherent excitonic dynamics in nanometric colloidal CdSe quantum dots (QD) dim...
Nanocrystal quantum dots exhibit size-dependent optoelectronic properties and provide intriguing sci...
Researchers have long sought to use surface ligands to enhance energy migration in nanocrystal solid...
Quantum dots (QDs) coupled into disordered arrays have exhibited the intriguing property of bulk-lik...
Nanocrystal surface functionalization is becoming widespread for applications exploiting fast charge...
The design of new complex structures containing semiconductor quantum dots offers a means to create ...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
The study of the photophysical properties of nanoscale materials has been a substantial research are...
Displacement of cadmium oleate (Cd(oleate)<sub>2</sub>) ligands for the exciton-delocalizing ligand...
Colloidal quantum dots (QDs) stand among the most attractive light-harvesting materials to be exploi...
Delocalization of excitons promoted by electronic coupling between clusters or quantum dots (QD) cha...
Abstract: Semiconductor nanocrystals have long been studied as alternatives to traditional bulk semi...
International audienceWithin semiconductor quantum dots (QDs), exciton recombination processes are n...
Currently, intensive research efforts focus on the fabrication of meso-structures of assembled collo...
Nanocomposites of colloidal quantum dots (QDs) integrated into conjugated polymers (CPs) are key to ...
peer reviewedInterdot coherent excitonic dynamics in nanometric colloidal CdSe quantum dots (QD) dim...
Nanocrystal quantum dots exhibit size-dependent optoelectronic properties and provide intriguing sci...
Researchers have long sought to use surface ligands to enhance energy migration in nanocrystal solid...
Quantum dots (QDs) coupled into disordered arrays have exhibited the intriguing property of bulk-lik...
Nanocrystal surface functionalization is becoming widespread for applications exploiting fast charge...
The design of new complex structures containing semiconductor quantum dots offers a means to create ...
Controlled reduction of graphene oxide is an alternative and promising method to tune the electronic...
The study of the photophysical properties of nanoscale materials has been a substantial research are...
Displacement of cadmium oleate (Cd(oleate)<sub>2</sub>) ligands for the exciton-delocalizing ligand...
Colloidal quantum dots (QDs) stand among the most attractive light-harvesting materials to be exploi...