An emission band at 2.4 eV, called the green band, is observed in most ZnO samples, no matter what growth technique is used. Sometimes this band includes fine structure, which consists mainly of doublets, repeated with a longitudinal-optical-phonon-energy spacing (72 meV). We have developed a vibronic model for the green band, based on transitions from two separate shallow donors to a deep acceptor. The donors, at energies 30 and 60 meV from the conduction-band edge, respectively, are also found from Hall-effect measurements
Hall-effect, photoluminescence (PL), and electron paramagnetic resonance (EPR) measurements have bee...
The mechanism of the commonly observed green photoluminescence (PL) emission in ZnO is still controv...
Optoelectronic properties of the II-VI semiconductor zinc oxide (ZnO) have been studied scientifical...
An emission band at 2.4 eV, called the green band, is observed in most ZnO samples, no matter what g...
The green emission band of ZnO has been investigated by both experimental and theoretical means. Two...
The green emission band of ZnO has been investigated by both experimental and theoretical means. Two...
We have investigated the green band (GB) emission from vertically aligned ZnO nanowires (NWs) prepar...
Nitrogen-doped ZnO sample has been annealed in O2 ambient at high temperature (1000 °C) to improve i...
In this work, the correlation between the characteristic green emissions and specific defects of ZnO...
The pressure behavior of the ultraviolet (UV) and green emission bands in ZnO tetrapod-like micro-ro...
ZnO single crystals, epilayers, and nanostructures often exhibit a variety of narrow emission lines ...
Zinc oxide (ZnO) is a promising material for ultra-violet optoelectronics applications due to its di...
Cathodoluminescence spectra have been measured to determine the characteristics of ubiquitous green ...
ZnO has re-attracted considerable interest as a wide band gap semiconductor and energy material in r...
The green (2.19 eV) and yellow (2.2 eV)luminescence bands in ZnO polycrystalline samples were studie...
Hall-effect, photoluminescence (PL), and electron paramagnetic resonance (EPR) measurements have bee...
The mechanism of the commonly observed green photoluminescence (PL) emission in ZnO is still controv...
Optoelectronic properties of the II-VI semiconductor zinc oxide (ZnO) have been studied scientifical...
An emission band at 2.4 eV, called the green band, is observed in most ZnO samples, no matter what g...
The green emission band of ZnO has been investigated by both experimental and theoretical means. Two...
The green emission band of ZnO has been investigated by both experimental and theoretical means. Two...
We have investigated the green band (GB) emission from vertically aligned ZnO nanowires (NWs) prepar...
Nitrogen-doped ZnO sample has been annealed in O2 ambient at high temperature (1000 °C) to improve i...
In this work, the correlation between the characteristic green emissions and specific defects of ZnO...
The pressure behavior of the ultraviolet (UV) and green emission bands in ZnO tetrapod-like micro-ro...
ZnO single crystals, epilayers, and nanostructures often exhibit a variety of narrow emission lines ...
Zinc oxide (ZnO) is a promising material for ultra-violet optoelectronics applications due to its di...
Cathodoluminescence spectra have been measured to determine the characteristics of ubiquitous green ...
ZnO has re-attracted considerable interest as a wide band gap semiconductor and energy material in r...
The green (2.19 eV) and yellow (2.2 eV)luminescence bands in ZnO polycrystalline samples were studie...
Hall-effect, photoluminescence (PL), and electron paramagnetic resonance (EPR) measurements have bee...
The mechanism of the commonly observed green photoluminescence (PL) emission in ZnO is still controv...
Optoelectronic properties of the II-VI semiconductor zinc oxide (ZnO) have been studied scientifical...