In the present study, the effect of S and Se substitution on structural, electrical and optical properties of AgGa(Se2-xSx) thin films has been investigated. AgGa(Se0.5S0.5 )2 thin films were prepared by using the thermal evaporation method. X-ray diffraction (XRD) analysis has revealed that the transformation from amorphous to polycrystalline structure took place at about 450 oC. The detailed information about the stoichometry and the segregation mechanisms of the constituent elements in the structure has been obtained by performing both energy dispersive X-ray analysis (EDXA) and X-ray photoelectron spectroscopy (XPS) measurements. AgGaSe2 thin films were deposited by using both electron-beam (e-beam) and sputtering techniques. In e-beam ...
The compound AgGaSe2 has received limited attention as a potential wide gap solar cell material for ...
Antimony doped and undoped nanostructured thin films of AgIn1 − xGaxSe2 and Ag(InGa)5Se8 on opticall...
In this study highly stoichiometric and monophase AgInSe2 thin films were prepared by selenization o...
The structural, electrical and optical properties of AgGa(Se0.5S0.5)(2) thin films deposited by usin...
In this study, AgGaSe2 (AGS) thin films were formed onto cleaned glass substrates by using the stack...
AgGa0.5In0.5Se2 thin films were deposited onto a quartz substrate by the electron-beam technique. Fo...
AgGaS2 (AGS) thin films were deposited onto glass substrates by sequential thermal evaporation of Ag...
787-792Thin films of AgxGa2-xSe2 (AGS) have been prepared onto glass substrates by stacked elemental...
In this work we present the preparation of AgGaSe2 thin films by Chemical Close Spaced Vapor Transpo...
Ternary chalcopyrite compounds are the semiconductors with suitable properties to be used as absorbe...
In this study, polycrystalline AgGaS2 thin films were deposited by the sequential evaporation of AgG...
The aim of this study is to understand the structural, optical and photo-electrical properties of th...
Polycrystalline thin films of AgIn1-XGaXSe2 (AIGS) with varying x (0 ≤ x ≤ 1.0) have been grown onto...
Thin films of chalcopyrite AgGaSe2 have been successfully grown on glass and glass molybdenum substr...
AbstractThe effects of composition and thermal annealing in between glass transition and crystalliza...
The compound AgGaSe2 has received limited attention as a potential wide gap solar cell material for ...
Antimony doped and undoped nanostructured thin films of AgIn1 − xGaxSe2 and Ag(InGa)5Se8 on opticall...
In this study highly stoichiometric and monophase AgInSe2 thin films were prepared by selenization o...
The structural, electrical and optical properties of AgGa(Se0.5S0.5)(2) thin films deposited by usin...
In this study, AgGaSe2 (AGS) thin films were formed onto cleaned glass substrates by using the stack...
AgGa0.5In0.5Se2 thin films were deposited onto a quartz substrate by the electron-beam technique. Fo...
AgGaS2 (AGS) thin films were deposited onto glass substrates by sequential thermal evaporation of Ag...
787-792Thin films of AgxGa2-xSe2 (AGS) have been prepared onto glass substrates by stacked elemental...
In this work we present the preparation of AgGaSe2 thin films by Chemical Close Spaced Vapor Transpo...
Ternary chalcopyrite compounds are the semiconductors with suitable properties to be used as absorbe...
In this study, polycrystalline AgGaS2 thin films were deposited by the sequential evaporation of AgG...
The aim of this study is to understand the structural, optical and photo-electrical properties of th...
Polycrystalline thin films of AgIn1-XGaXSe2 (AIGS) with varying x (0 ≤ x ≤ 1.0) have been grown onto...
Thin films of chalcopyrite AgGaSe2 have been successfully grown on glass and glass molybdenum substr...
AbstractThe effects of composition and thermal annealing in between glass transition and crystalliza...
The compound AgGaSe2 has received limited attention as a potential wide gap solar cell material for ...
Antimony doped and undoped nanostructured thin films of AgIn1 − xGaxSe2 and Ag(InGa)5Se8 on opticall...
In this study highly stoichiometric and monophase AgInSe2 thin films were prepared by selenization o...