The development of open-air, high-throughput, low-cost thin film fabrication techniques has immense potential and interest in optoelectronics. However, the oxygen-rich atmosphere associated with such processes can have detrimental effects on the electrical properties of the deposited films. An example of this is found in materials based on ZnO, for which atmospheric processing results in low mobility values. This stems mainly from adsorbed oxygen species at the grain boundaries, which limit carrier transport. This paper describes the effect of a low-temperature UV treatment on the electrical properties of ZnO and aluminum doped zinc oxide (ZnO:Al) films deposited by atmospheric pressure spatial atomic layer deposition (AP-SALD). Because of ...
Current research on transparent conductive oxides (TCOs) is focusing on indium-free TCOs, such as Al...
Current research on transparent conductive oxides (TCOs) is focusing on indium-free TCOs, such as Al...
International audienceThe development of transparent conductive materials is of great interest for a...
Zinc oxide (ZnO) is considered as the strongest alternative to tin doped indium oxide (ITO) - a comm...
Undoped and doped zinc oxide in film form is used in a wide range of applications. Its electrical an...
Undoped and doped zinc oxide in film form is used in a wide range of applications. Its electrical an...
Transparent conductive oxides (TCO) are indispensable as front contact for most of the thin film sol...
Transparent conductive oxides (TCO) are indispensable as front contact for most of the thin film sol...
Highly conducting and transparent Al-doped ZnO (AZO) thin films, which are oriented along c-axis and...
Undoped and indium-doped ZnO films have been deposited by atmospheric spatial atomic-layer-depositio...
Aluminum-doped zinc oxide (ZnOx:Al) films have been deposited on a moving glass substrate by a high ...
Undoped and indium-doped ZnO films have been deposited by atmospheric spatial atomic-layer-depositio...
Undoped and indium-doped ZnO films have been deposited by atmospheric spatial atomic-layer-depositio...
International audienceThe development of transparent conductive materials is of great interest for a...
International audienceThe development of transparent conductive materials is of great interest for a...
Current research on transparent conductive oxides (TCOs) is focusing on indium-free TCOs, such as Al...
Current research on transparent conductive oxides (TCOs) is focusing on indium-free TCOs, such as Al...
International audienceThe development of transparent conductive materials is of great interest for a...
Zinc oxide (ZnO) is considered as the strongest alternative to tin doped indium oxide (ITO) - a comm...
Undoped and doped zinc oxide in film form is used in a wide range of applications. Its electrical an...
Undoped and doped zinc oxide in film form is used in a wide range of applications. Its electrical an...
Transparent conductive oxides (TCO) are indispensable as front contact for most of the thin film sol...
Transparent conductive oxides (TCO) are indispensable as front contact for most of the thin film sol...
Highly conducting and transparent Al-doped ZnO (AZO) thin films, which are oriented along c-axis and...
Undoped and indium-doped ZnO films have been deposited by atmospheric spatial atomic-layer-depositio...
Aluminum-doped zinc oxide (ZnOx:Al) films have been deposited on a moving glass substrate by a high ...
Undoped and indium-doped ZnO films have been deposited by atmospheric spatial atomic-layer-depositio...
Undoped and indium-doped ZnO films have been deposited by atmospheric spatial atomic-layer-depositio...
International audienceThe development of transparent conductive materials is of great interest for a...
International audienceThe development of transparent conductive materials is of great interest for a...
Current research on transparent conductive oxides (TCOs) is focusing on indium-free TCOs, such as Al...
Current research on transparent conductive oxides (TCOs) is focusing on indium-free TCOs, such as Al...
International audienceThe development of transparent conductive materials is of great interest for a...