The optical and structural properties of Li-doped ZnO nanowires grown by a hydrothermal method are reported herein. The low-temperature and temperature-dependent photoluminescence spectra clearly exhibited emission peaks that confirmed the presence of a lithium impurity as an acceptor dopant. Particularly, the acceptor energy level of the Li dopant was estimated to be 121 meV from the PL spectra. This value was also indicated from an Arrhenius plot of the integrated PL intensity of the A degrees X emission as a function of temperature. These results are in agreement with theoretical and experimental results of previously considered p-type dopants reported in other studies. (C) 2012 The Japan Society of Applied PhysicsThis research was suppo...
ZnO is a wide band-gap semiconductor material presently being developed for device applications in t...
The photoluminescence properties of individual ZnO nanorods, grown by atmospheric pressure metalorga...
Zinc oxide nano-wires (ZnO NWs) are synthesized reproducibly with high yield via a low temperature h...
The optical and structural properties of Li-doped ZnO nanowires grown by a hydrothermal method are r...
The present study describes the room-temperature cathodeluminescence (CL) and temperaturedependent p...
This article presents a comprehensive experimental study of optical properties of Li-doped ZnO nanor...
[[abstract]]The well-aligned Li-doped zinc oxide nanowires (ZnO NWs) were successfully grown on Si s...
Semiconductor single crystal ZnO nanowires have been successfully synthesized by a simple method bas...
Photoluminescence studies of zinc oxide nanowires produced by a carbo-thermal method on a nickel foi...
p?type ZnO nanowires (NWs) based on a simple hydrothermal technique with a lithium dopant are demons...
Vertically aligned ZnO nanowires with high aspect ratio were prepared by chemical vapor deposition o...
[[abstract]]Zinc oxide (ZnO) nanowire (NW) was grown on a ZnO-buffered silicon substrate by a hydrot...
ZnO is a promising semiconductor material with a direct band gap energy of 3.3 eV which makes it a g...
In this work, the hydrothermally grown ZnO nanostructures were successfully prepared using the aqueo...
ZnO materials have been at the centre of many studies for decades. Doping of ZnO by lithium atoms is...
ZnO is a wide band-gap semiconductor material presently being developed for device applications in t...
The photoluminescence properties of individual ZnO nanorods, grown by atmospheric pressure metalorga...
Zinc oxide nano-wires (ZnO NWs) are synthesized reproducibly with high yield via a low temperature h...
The optical and structural properties of Li-doped ZnO nanowires grown by a hydrothermal method are r...
The present study describes the room-temperature cathodeluminescence (CL) and temperaturedependent p...
This article presents a comprehensive experimental study of optical properties of Li-doped ZnO nanor...
[[abstract]]The well-aligned Li-doped zinc oxide nanowires (ZnO NWs) were successfully grown on Si s...
Semiconductor single crystal ZnO nanowires have been successfully synthesized by a simple method bas...
Photoluminescence studies of zinc oxide nanowires produced by a carbo-thermal method on a nickel foi...
p?type ZnO nanowires (NWs) based on a simple hydrothermal technique with a lithium dopant are demons...
Vertically aligned ZnO nanowires with high aspect ratio were prepared by chemical vapor deposition o...
[[abstract]]Zinc oxide (ZnO) nanowire (NW) was grown on a ZnO-buffered silicon substrate by a hydrot...
ZnO is a promising semiconductor material with a direct band gap energy of 3.3 eV which makes it a g...
In this work, the hydrothermally grown ZnO nanostructures were successfully prepared using the aqueo...
ZnO materials have been at the centre of many studies for decades. Doping of ZnO by lithium atoms is...
ZnO is a wide band-gap semiconductor material presently being developed for device applications in t...
The photoluminescence properties of individual ZnO nanorods, grown by atmospheric pressure metalorga...
Zinc oxide nano-wires (ZnO NWs) are synthesized reproducibly with high yield via a low temperature h...