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Electrical conduction and optical properties of amorphous (Sb2Se3)100−xSnx thin films
Authors:Praveen Kumar  R. Thangaraj  
Affiliation:aSemiconductors Laboratory, Department of Applied Physics, Guru Nanak Dev University, Amritsar 143005, India
Abstract:
The variation of DC electrical conductivity and the optical properties of thermally evaporated a- (Sb2Se3)100−xSnx thin films with temperature have been studied. It is found that the thermal activation energy decreases, while the optical gap first increases (up to x=1) and then decreases, with the increase in Sn content. These results have been explained by taking into consideration the structural modifications induced by the incorporation of Sn into the parent alloy. The variation in the conductivity prefactor (σo) with Sn addition indicates a change in the dominant conduction transport mechanism from extended states to localized states. An experimental correlation between the activation energy and the pre-exponential factor has been observed, indicating the validity of Meyer–Neldel rule in the studied samples.
Keywords:A. Disordered systems   A. Thin films   D. Electronic transport   D. Optical properties
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