A comparative study of the structural and optical properties of transition metals (M= Fe, Co, Mn, Ni) doped ZnO films deposited by spray-pyrolysis technique for …
A Badawi, MG Althobaiti, EE Ali, SS Alharthi… - Optical Materials, 2022 - Elsevier
A comparative study of the functional properties of transition metals (M= Fe, Co, Mn and Ni)
doped ZnO nanostructured films has been performed for applications in optoelectronics and …
doped ZnO nanostructured films has been performed for applications in optoelectronics and …
Effect of copper do** on plasmonic nanofilms for high performance photovoltaic energy applications
In the current era, alternative but environment-friendly sources of energy have gained
attention to meet the growing energy demands. In particular, the focus of research has been …
attention to meet the growing energy demands. In particular, the focus of research has been …
[HTML][HTML] Tailoring the optical properties of CdO nanostructures via barium do** for optical windows applications
In this study, the optical properties of CdO nanostructured films have been tailored via
barium do** for optical windows applications. Barium-doped cadmium oxide (Ba: CdO) …
barium do** for optical windows applications. Barium-doped cadmium oxide (Ba: CdO) …
Effect of Bi incorporation in adjusting structural, optical, and electrical conduction mechanism of xBi2O3-(0.40-x) Fe2O3-0.35 V2O5-0.25 P2O5 glass nanocomposites
This study investigates the influence of Bismuth incorporating on the structural, optical, as
well as electrical properties of bulk glassy samples composed of xBi 2 O 3-(0.40-x) Fe 2 O 3 …
well as electrical properties of bulk glassy samples composed of xBi 2 O 3-(0.40-x) Fe 2 O 3 …
Modification of the structural, linear and nonlinear optical properties of zinc oxide thin films via barium and magnesium do**
In the current work, the structural, linear and nonlinear optical properties of zinc oxide thin
films have been modified via barium/magnesium do** for modern optoelectronic …
films have been modified via barium/magnesium do** for modern optoelectronic …
Impact of silver/copper dual-do** on the structure, linear and non-linear optical performance of ZnO thin films
Abstract The impact of Ag, Cu and Ag/Cu dual-do** on the structure, linear and non-linear
optical performance of ZnO thin films has been investigated. Undoped ZnO and Ag, Cu and …
optical performance of ZnO thin films has been investigated. Undoped ZnO and Ag, Cu and …
Effect of zinc do** on the structure and optical properties of iron oxide nanostructured films prepared by spray pyrolysis technique
In the current work, the effect of zinc do** on the structural and optical properties of iron
oxide has been explored for optoelectronic applications. Undoped and different (2–10 wt%) …
oxide has been explored for optoelectronic applications. Undoped and different (2–10 wt%) …
Effect of do** on the structural, optical and electrical properties of La-doped ZnO thin films
In the current work, we studied the optical and electrical properties of pure and lanthanum-
doped zinc oxide thin films prepared using the spray pyrolysis technique. All films deposited …
doped zinc oxide thin films prepared using the spray pyrolysis technique. All films deposited …
A comprehensive experimental investigation of La@ CdS nanostructured thin films: Structural, opto-nonlinear and photodetection properties
Abstract Device grade La@ CdS nanostructured thin films with hexagonal wurtzite structure
were fabricated on glass substrates with 0 wt.%, 1.0 wt.%, 3.0 wt.% and 5.0 wt.% La do** …
were fabricated on glass substrates with 0 wt.%, 1.0 wt.%, 3.0 wt.% and 5.0 wt.% La do** …
An effect of Zn content do** on opto-third order nonlinear characteristics of nanostructured CdS thin films fabricated through spray pyrolysis for optoelectronics
The facile and cost-effective fabrication of cadmium sulphide (CdS) thin films with diverse
contents of Zn was carried out on substrates of glass which maintained at 300° C …
contents of Zn was carried out on substrates of glass which maintained at 300° C …