Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in optoelectronics and photovoltaics, and it has been shown to be promoted by quantum confinement effects in nanostructures. However, mostly due to the short lifetimes of additional electron-hole (e-h) pairs generated by CM, major improvements of quantum dot devices that exploit CM are limited. Here we investigate CM in SiO2 solid state dispersions of phosphorus and boron codoped Si nanocrystals (NCs): an exotic variant of Si NCs whose photoluminescence (PL) emission energy, the optical bandgap, is significantly red-shifted in comparison to undoped Si NCs. By combining the results obtained by ultrafast induced absorption (IA) with PL quantum yiel...
One of the important obstacles on the way to application of Si nanocrystals for development of pract...
We show that the optical and electronic properties of nanocrystalline silicon can be efficiently tun...
We report on investigations of optical carrier generation in silicon nanocrystals embedded in an SiO...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Carrier multiplication by generation of two or more electron-hole pairs following the absorption of ...
Carrier multiplication is an important process which can enhance the efficiency of photovoltaic and ...
We report on investigations of optical generation of carriers in Si nanocrystals embedded in SiO2 ma...
The enhancement of carrier multiplication in semiconductor nanocrystals attracts a great deal of att...
We report on investigations of optical generation of carriers in Si nanocrystals embedded in SiO2 ma...
We investigated experimentally optical generation of electron–hole pairs in layers of silicon nanocr...
Phosphorus (P) and boron (B) co-doped Si nanocrystals (NCs) have raised interest in the optoelectron...
Boron (B) doping of silicon nanocrystals requires the incorporation of a B-atom on a lattice site of...
Doping control at the nanoscale can be used to modify optical and electronic properties thus inducin...
Doping control at the nanoscale can be used to modify optical and electronic properties thus inducin...
We report on investigations of optical carrier generation in silicon nanocrystals embedded in an SiO...
One of the important obstacles on the way to application of Si nanocrystals for development of pract...
We show that the optical and electronic properties of nanocrystalline silicon can be efficiently tun...
We report on investigations of optical carrier generation in silicon nanocrystals embedded in an SiO...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Carrier multiplication by generation of two or more electron-hole pairs following the absorption of ...
Carrier multiplication is an important process which can enhance the efficiency of photovoltaic and ...
We report on investigations of optical generation of carriers in Si nanocrystals embedded in SiO2 ma...
The enhancement of carrier multiplication in semiconductor nanocrystals attracts a great deal of att...
We report on investigations of optical generation of carriers in Si nanocrystals embedded in SiO2 ma...
We investigated experimentally optical generation of electron–hole pairs in layers of silicon nanocr...
Phosphorus (P) and boron (B) co-doped Si nanocrystals (NCs) have raised interest in the optoelectron...
Boron (B) doping of silicon nanocrystals requires the incorporation of a B-atom on a lattice site of...
Doping control at the nanoscale can be used to modify optical and electronic properties thus inducin...
Doping control at the nanoscale can be used to modify optical and electronic properties thus inducin...
We report on investigations of optical carrier generation in silicon nanocrystals embedded in an SiO...
One of the important obstacles on the way to application of Si nanocrystals for development of pract...
We show that the optical and electronic properties of nanocrystalline silicon can be efficiently tun...
We report on investigations of optical carrier generation in silicon nanocrystals embedded in an SiO...