We demonstrate engineering the photocharge generation efficiency of nanoparticles on the nanometer scale by using a type-II band-gap structure. Compared to bare CdSe cores, the dispersion of type-II core/shell nanoparticles in photorefractive polymer led to an average 100% increase in photocurrents. An improvement to the refractive-index construction time, and a near 100% enhancement to the two beam coupling net-gain coefficients and four-wave mixing internal diffraction efficiencies have been achieved at moderate biases
We report the observation of the photorefractive effect in an organic- inorganic polymer composite p...
We report growth and formation of hybrid core-shell nanoparticle systems, where photoinduced electro...
The photorefractive performance of a polymeric composite photosensitized through the inclusion of Ni...
We demonstrate engineering the photocharge generation efficiency of nanoparticles on the nanometer s...
We investigated the photorefractivity enhancement of polymeric composites by introducing gold nanopa...
In this paper, we report on the enhanced photorefractivity induced by the exciton-plasmon coupling i...
Extensive study of photorefractive polymeric composites photosensitized with semiconductor nanocryst...
Photorefractivity has attracted intense attention owing to its ability to spatially modulate the ref...
Because of their enhanced spectral response, photorefractive polymeric composites photosensitized wi...
Semiconductor nanocrystals of different formulations have been extensively studied for use in thin-f...
To manifest a photorefractive effect, the polymer must possess a photocharge generator, a charge tra...
“Inspired by the promise of enhanced spectral response, photorefractive polymeric composites photose...
This paper reports new photorefractive polymeric nanocomposites photosensitized with HgS or PbS nano...
The photosensitization of photorefractive polymeric composites for operation at 633 nm is accomplish...
The hole and electron drift mobility, photoelectric properties as well as influence of temperature, ...
We report the observation of the photorefractive effect in an organic- inorganic polymer composite p...
We report growth and formation of hybrid core-shell nanoparticle systems, where photoinduced electro...
The photorefractive performance of a polymeric composite photosensitized through the inclusion of Ni...
We demonstrate engineering the photocharge generation efficiency of nanoparticles on the nanometer s...
We investigated the photorefractivity enhancement of polymeric composites by introducing gold nanopa...
In this paper, we report on the enhanced photorefractivity induced by the exciton-plasmon coupling i...
Extensive study of photorefractive polymeric composites photosensitized with semiconductor nanocryst...
Photorefractivity has attracted intense attention owing to its ability to spatially modulate the ref...
Because of their enhanced spectral response, photorefractive polymeric composites photosensitized wi...
Semiconductor nanocrystals of different formulations have been extensively studied for use in thin-f...
To manifest a photorefractive effect, the polymer must possess a photocharge generator, a charge tra...
“Inspired by the promise of enhanced spectral response, photorefractive polymeric composites photose...
This paper reports new photorefractive polymeric nanocomposites photosensitized with HgS or PbS nano...
The photosensitization of photorefractive polymeric composites for operation at 633 nm is accomplish...
The hole and electron drift mobility, photoelectric properties as well as influence of temperature, ...
We report the observation of the photorefractive effect in an organic- inorganic polymer composite p...
We report growth and formation of hybrid core-shell nanoparticle systems, where photoinduced electro...
The photorefractive performance of a polymeric composite photosensitized through the inclusion of Ni...