© 2015 American Chemical Society. Single photon sources are required for a wide range of applications in quantum information science, quantum cryptography, and quantum communications. However, the majority of room temperature emitters to date are only excited optically, which limits their proper integration into scalable devices. In this work, we overcome this limitation and present room temperature electrically driven light emission from localized defects in zinc oxide (ZnO) nanoparticles and thin films. The devices emit in the red spectral range and show excellent rectifying behavior. The emission is stable over an extensive period of time, providing an important prerequisite for practical devices. Our results open possibilities for build...
Nanostructuring of semiconductors is a novel means of developing new electronic and optoelectronic d...
ZnO nanocones were grown on porous silicon (PS) by vapor transport at different temperatures and O2 ...
The authors report enhanced ultraviolet electroluminescence at room temperature from a diode structu...
Single photon sources are required for a wide range of applications in quantum information science, ...
Room temperature single photon emitters are very important resources for photonics and emerging quan...
Room temperature single photon emitters are very important resources for photonics and emerging quan...
University of Technology Sydney. Faculty of Science.Zinc oxide (ZnO) is a large bandgap (3.37 eV at ...
Room temperature single-photon emission and quantum characterization is reported for isolated defect...
Zinc oxide (ZnO) is a promising semiconductor that is suitable for bioimaging applications due to it...
In this work, the electroluminescence (EL) emission of zinc oxide (ZnO)/Si nanocrystals (NCs)-based ...
Zinc oxide (ZnO) nanostructures are emerging as the key building blocks for nanoscale optoelectronic...
Investigations that probe defects one at a time offer a unique opportunity to observe properties and...
In this paper ZnO nanorods and nanodots (with and without a SiO2 buffer layer) were grown on p-Si, f...
The fabrication, by an all electrochemical process, of porous Si/ZnO nanostructures with engineered ...
Zinc oxide (ZnO) is of great interest in photonic applications due to its wide bandgap (3.37 eV) and...
Nanostructuring of semiconductors is a novel means of developing new electronic and optoelectronic d...
ZnO nanocones were grown on porous silicon (PS) by vapor transport at different temperatures and O2 ...
The authors report enhanced ultraviolet electroluminescence at room temperature from a diode structu...
Single photon sources are required for a wide range of applications in quantum information science, ...
Room temperature single photon emitters are very important resources for photonics and emerging quan...
Room temperature single photon emitters are very important resources for photonics and emerging quan...
University of Technology Sydney. Faculty of Science.Zinc oxide (ZnO) is a large bandgap (3.37 eV at ...
Room temperature single-photon emission and quantum characterization is reported for isolated defect...
Zinc oxide (ZnO) is a promising semiconductor that is suitable for bioimaging applications due to it...
In this work, the electroluminescence (EL) emission of zinc oxide (ZnO)/Si nanocrystals (NCs)-based ...
Zinc oxide (ZnO) nanostructures are emerging as the key building blocks for nanoscale optoelectronic...
Investigations that probe defects one at a time offer a unique opportunity to observe properties and...
In this paper ZnO nanorods and nanodots (with and without a SiO2 buffer layer) were grown on p-Si, f...
The fabrication, by an all electrochemical process, of porous Si/ZnO nanostructures with engineered ...
Zinc oxide (ZnO) is of great interest in photonic applications due to its wide bandgap (3.37 eV) and...
Nanostructuring of semiconductors is a novel means of developing new electronic and optoelectronic d...
ZnO nanocones were grown on porous silicon (PS) by vapor transport at different temperatures and O2 ...
The authors report enhanced ultraviolet electroluminescence at room temperature from a diode structu...