Silver indium sulfide (AgInS2) thin films are deposited by sequential sputtering of metallic precursor Ag/In] followed by sulfurization. Effect of substrate temperature (Tsub) during sulfurization process on the film growth is studied by varying the substrate temperature from 350 to 500 degrees C. Films prepared above 350 degrees C showed a mixture of orthorhombic and tetragonal phases of AgInS2 with tetragonal phase being dominant. Better crystalline, nearly stoichiometric and p-type films are obtained at a substrate temperature of 500 degrees C. The characteristic A(1) mode of AgInS2 chalcopyrite structure is observed in the Raman spectra at 274 cm(-1) for the films prepared above 350 degrees C. The grain size of the film increases from 4...
A set of silver-doped indium sulphide (In2S3:Ag) thin films were deposited by spray pyrolysis techni...
CuInS2 is a good candidate as photovoltaic absorber for the fabrication of high efficient and low co...
Silver indium sulfide (AgInS2) thin films have been prepared by spray pyrolysis (SP) technique using...
Silver indium sulfide (AgInS2) thin films are deposited by sequential sputtering of metallic precurs...
Silver Indium Di-sulfide (AgInS2) thin films are deposited using ultrasonic spray pyrolysis techniqu...
Silver Indium sulfide (AgInS2) thin films are prepared using low cost spray pyrolysis technique. Inf...
This paper describes preparation of AgInS2 thin films as an absorption layer material for a top cell...
This paper describes preparation of AgInS(2) thin films as an absorption layer material for a top ce...
Silver indium sulfide (AgInS2) thin films have been prepared by spray pyrolysis (SP) technique using...
This work presents results related to the morphological characterization, the phase identification a...
In this study, thin films of AgInS2 with chalcopyrite-type tetragonal structure were grown by means ...
Currently conventional sources like coal, petroleum and natural gas meet the energy requirements of ...
International audienceSilver doped indium sulfide thin films were deposited on ordinary glass substr...
In this study highly stoichiometric and monophase AgInSe2 thin films were prepared by selenization o...
In this work are presented results related with phase identification and study of the homogeneity in...
A set of silver-doped indium sulphide (In2S3:Ag) thin films were deposited by spray pyrolysis techni...
CuInS2 is a good candidate as photovoltaic absorber for the fabrication of high efficient and low co...
Silver indium sulfide (AgInS2) thin films have been prepared by spray pyrolysis (SP) technique using...
Silver indium sulfide (AgInS2) thin films are deposited by sequential sputtering of metallic precurs...
Silver Indium Di-sulfide (AgInS2) thin films are deposited using ultrasonic spray pyrolysis techniqu...
Silver Indium sulfide (AgInS2) thin films are prepared using low cost spray pyrolysis technique. Inf...
This paper describes preparation of AgInS2 thin films as an absorption layer material for a top cell...
This paper describes preparation of AgInS(2) thin films as an absorption layer material for a top ce...
Silver indium sulfide (AgInS2) thin films have been prepared by spray pyrolysis (SP) technique using...
This work presents results related to the morphological characterization, the phase identification a...
In this study, thin films of AgInS2 with chalcopyrite-type tetragonal structure were grown by means ...
Currently conventional sources like coal, petroleum and natural gas meet the energy requirements of ...
International audienceSilver doped indium sulfide thin films were deposited on ordinary glass substr...
In this study highly stoichiometric and monophase AgInSe2 thin films were prepared by selenization o...
In this work are presented results related with phase identification and study of the homogeneity in...
A set of silver-doped indium sulphide (In2S3:Ag) thin films were deposited by spray pyrolysis techni...
CuInS2 is a good candidate as photovoltaic absorber for the fabrication of high efficient and low co...
Silver indium sulfide (AgInS2) thin films have been prepared by spray pyrolysis (SP) technique using...