We report growth, monolayer formation, and (electrical bistability and memory phenomenon) properties of hybrid core-shell nanoparticles. While inorganic quantum dots, such as CdS or CdSe, act as the core, a monolayer of ionic organic dye molecules, electrostatically bound to the surface of functionalized quantum dots, forms the shell. We form a monolayer of the core-shell hybrid nanoparticles via a layer-by-layer electrostatic assembly process. Growth and monolayer formation of the organic-inorganic hybrid nanoparticles have been substantiated by usual characterization methods, including electronic absorption spectroscopy of dispersed solution and atomic force microscope images of scratched films. Devices based on the hybrid nanoparticles h...
Organic light-emitting diodes (LEDs) have limitations considering poor charge carrier mobility and s...
We have grown core-shell nanotubes with CNTs in the core and CdS as the shell. The thickness of the ...
Colloidal semiconducting nanocrystals hold significant potential for third generation photovoltaics ...
We report growth, monolayer formation, and (electrical bistability and memory phenomenon) properties...
CdS/PbS core-shell nanoparticles are grown via ion-exchange reaction route. Devices based on such na...
We report that an enhancement in electrical bistability in devices based on organic molecules can be...
The authors demonstrate thin-film formation of capped-CdSe nanoparticles via layer-by-layer electros...
We correlate the electronic coupling between quantum dots and the transport gap of nanoparticle-pass...
We report growth and formation of hybrid core-shell nanoparticle systems, where photoinduced electro...
Transmission electron microscopy images showed that conjugation between single core-shell CdSe/ZnSe ...
We report electrical bistability in electrostatic assembly of CdSe nanoparticles. We obtained thin f...
The electrical bistabilities of core/shell CdSe/ZnS nanoparticles embedded in polystyrene (PS) and p...
Organic bistable devices (OBDs) with CuInS2 (CIS) quantum dots (QDs) embedded in a poly(N-vinylcarba...
Hybrid nanoparticles (NPs) consisting of an n-type CdSe/ZnS quantum dot (QD) as a core and p-type p-...
Design of light harvesting systems using inorganic–organic hybrid nanostructures is an emerging fiel...
Organic light-emitting diodes (LEDs) have limitations considering poor charge carrier mobility and s...
We have grown core-shell nanotubes with CNTs in the core and CdS as the shell. The thickness of the ...
Colloidal semiconducting nanocrystals hold significant potential for third generation photovoltaics ...
We report growth, monolayer formation, and (electrical bistability and memory phenomenon) properties...
CdS/PbS core-shell nanoparticles are grown via ion-exchange reaction route. Devices based on such na...
We report that an enhancement in electrical bistability in devices based on organic molecules can be...
The authors demonstrate thin-film formation of capped-CdSe nanoparticles via layer-by-layer electros...
We correlate the electronic coupling between quantum dots and the transport gap of nanoparticle-pass...
We report growth and formation of hybrid core-shell nanoparticle systems, where photoinduced electro...
Transmission electron microscopy images showed that conjugation between single core-shell CdSe/ZnSe ...
We report electrical bistability in electrostatic assembly of CdSe nanoparticles. We obtained thin f...
The electrical bistabilities of core/shell CdSe/ZnS nanoparticles embedded in polystyrene (PS) and p...
Organic bistable devices (OBDs) with CuInS2 (CIS) quantum dots (QDs) embedded in a poly(N-vinylcarba...
Hybrid nanoparticles (NPs) consisting of an n-type CdSe/ZnS quantum dot (QD) as a core and p-type p-...
Design of light harvesting systems using inorganic–organic hybrid nanostructures is an emerging fiel...
Organic light-emitting diodes (LEDs) have limitations considering poor charge carrier mobility and s...
We have grown core-shell nanotubes with CNTs in the core and CdS as the shell. The thickness of the ...
Colloidal semiconducting nanocrystals hold significant potential for third generation photovoltaics ...