SPIE Proceedings v.8263 entitled: Oxide-based Materials and Devices III ... San Francisco, California ... 2012Arsenic-doped ZnO films were fabricated by radio frequency magnetron sputtering method with different substrate temperature T S. Growing with the low substrate temperature of T S=200°C yielded n-type semi-insulating sample. Increasing the substrate temperature would yield p-type ZnO film and reproducible p-type film could be produced at T S∼ 450°C. Post-growth annealing of the n-type As-doped ZnO sample grown at the low substrate temperature (T S=200°C) in air at 500°C also converted the film to p-type conductivity. Further increasing the post-growth annealing temperature would convert the p-type sample back to n-type. With the resu...
This paper reviews the effects of the operating parameters on the optical and electrical properties ...
The dependence on the temperature dependence of the electrical conductivity during the heat treatmen...
Transparent conductive layers (TCOs) attract the attention in opto-electronic and photovoltaic devic...
Arsenic-doped ZnO films were fabricated by radio frequency magnetron sputtering method at a relative...
Arsenic doped ZnO and ZnMgO films were deposited on SiO(2) using radio frequency magnetron sputterin...
Zinc oxide is a direct wide band gap material having excellent optical properties. It has attracted...
As-doped ZnO films were grown by the radio frequency magnetron sputtering method. As the substrate t...
As-doped p-type ZnO films were grown on GaAs by sputtering and thermal diffusion process. Hall effec...
P doped ZnO films were grown on quartz by radio frequency-magnetron sputtering method using a ZnO ta...
We experimentally find that the ZnO thin films deposited by dc-magnetron sputtering have different c...
The main objective of this dissertation was to explore the structural, electrical, and optical prope...
As-doped ZnO films were grown by the radio frequency magnetron sputtering method. As the substrate t...
Abstract — Sputtered zinc oxide (ZnO) without intentional dop-ing was thermally annealed and the dep...
Zinc oxide (ZnO) has gained much interest recently due to its semiconductivity, optical transparency...
The role of the substrate temperature on the structural, optical, and electronic properties of ZnO t...
This paper reviews the effects of the operating parameters on the optical and electrical properties ...
The dependence on the temperature dependence of the electrical conductivity during the heat treatmen...
Transparent conductive layers (TCOs) attract the attention in opto-electronic and photovoltaic devic...
Arsenic-doped ZnO films were fabricated by radio frequency magnetron sputtering method at a relative...
Arsenic doped ZnO and ZnMgO films were deposited on SiO(2) using radio frequency magnetron sputterin...
Zinc oxide is a direct wide band gap material having excellent optical properties. It has attracted...
As-doped ZnO films were grown by the radio frequency magnetron sputtering method. As the substrate t...
As-doped p-type ZnO films were grown on GaAs by sputtering and thermal diffusion process. Hall effec...
P doped ZnO films were grown on quartz by radio frequency-magnetron sputtering method using a ZnO ta...
We experimentally find that the ZnO thin films deposited by dc-magnetron sputtering have different c...
The main objective of this dissertation was to explore the structural, electrical, and optical prope...
As-doped ZnO films were grown by the radio frequency magnetron sputtering method. As the substrate t...
Abstract — Sputtered zinc oxide (ZnO) without intentional dop-ing was thermally annealed and the dep...
Zinc oxide (ZnO) has gained much interest recently due to its semiconductivity, optical transparency...
The role of the substrate temperature on the structural, optical, and electronic properties of ZnO t...
This paper reviews the effects of the operating parameters on the optical and electrical properties ...
The dependence on the temperature dependence of the electrical conductivity during the heat treatmen...
Transparent conductive layers (TCOs) attract the attention in opto-electronic and photovoltaic devic...