In this work, conductive atomic force microscopy is used to study the inhomogeneous surface electrical conductivity of Al-doped ZnO thin films at a nanoscale dimension. To this end, Al-doped ZnO films were deposited onto the soda lime glass substrates at substrate temperature (Ts) varying from 303 to 673 K in radio frequency magnetron sputtering. The obtained local surface electrical conductivity values are found to be influenced by their bulk electrical resistivity, surface topography and tip geometry. Further, the average (local) surface conductivity from the film surface is found to increase with increasing Ts from 303 to 623 K, beyond which they decrease until 673 K.by Tvarit Patel and Emila Pand
In this study, ZnO and aluminum doped ZnO (AZO) thin films were deposited at constant RF power of 10...
The report devoted to study the influence of Al content on its electroactivity in ZnO thin films. Al...
To evaluate the influence of film thickness on the structural, electrical, and optical properties of...
In this study, variation in the local surface electrical heterogeneity within and also for a thicken...
Aluminium (Al) doped zinc oxide (ZnO) has been considered as one of the promising transparent conduc...
Al-doped ZnO thin films were synthesized from oxygen reactive co-sputtering of Al and Zn targets. Ex...
In this study, a qualitative relationship between the surface and bulk electronic states for Al-dope...
Aluminum doped-zinc oxide (AZO) thin films were prepared on glass substrate by radio-frequency (RF) ...
The paper presents the investigation by conductive-atomic force microscopy (C-AFM) of the variation ...
Transparent conductive oxides (TCO) are indispensable as front contact for most of the thin film sol...
In this work, the structural, electrical, and optical properties as well as chemical bonding state o...
We investigated of Undoped ZnO and Magnesium (Mg)-Aluminium (Al) co-doped Zinc Oxide (MAZO) nanostr...
In this work, the surface and electrical characteristics ZnO:Al thin films deposited by RF magnetron...
We report on the conductive-atomic force microscopy (C-AFM) study of metallic layers in order to fin...
This study addresses the variation in electrical properties in a thickening Al-doped ZnO (AZO) film ...
In this study, ZnO and aluminum doped ZnO (AZO) thin films were deposited at constant RF power of 10...
The report devoted to study the influence of Al content on its electroactivity in ZnO thin films. Al...
To evaluate the influence of film thickness on the structural, electrical, and optical properties of...
In this study, variation in the local surface electrical heterogeneity within and also for a thicken...
Aluminium (Al) doped zinc oxide (ZnO) has been considered as one of the promising transparent conduc...
Al-doped ZnO thin films were synthesized from oxygen reactive co-sputtering of Al and Zn targets. Ex...
In this study, a qualitative relationship between the surface and bulk electronic states for Al-dope...
Aluminum doped-zinc oxide (AZO) thin films were prepared on glass substrate by radio-frequency (RF) ...
The paper presents the investigation by conductive-atomic force microscopy (C-AFM) of the variation ...
Transparent conductive oxides (TCO) are indispensable as front contact for most of the thin film sol...
In this work, the structural, electrical, and optical properties as well as chemical bonding state o...
We investigated of Undoped ZnO and Magnesium (Mg)-Aluminium (Al) co-doped Zinc Oxide (MAZO) nanostr...
In this work, the surface and electrical characteristics ZnO:Al thin films deposited by RF magnetron...
We report on the conductive-atomic force microscopy (C-AFM) study of metallic layers in order to fin...
This study addresses the variation in electrical properties in a thickening Al-doped ZnO (AZO) film ...
In this study, ZnO and aluminum doped ZnO (AZO) thin films were deposited at constant RF power of 10...
The report devoted to study the influence of Al content on its electroactivity in ZnO thin films. Al...
To evaluate the influence of film thickness on the structural, electrical, and optical properties of...