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27-05-2016

The optical and electrical transport studies of ZnxCo1−xS thin films

Authors: S. S. Kamble, A. Sikora, S. L. Deshmukh, S. T. Pawar, G. T. Chavan, D. P. Dubal, N. B. Chaure, N. N. Maldar, L. P. Deshmukh

Published in: Journal of Materials Science: Materials in Electronics | Issue 12/2016

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Abstract

In an attempt to design and fabricate a suitable II–VI group material of variable optical gap, we have synthesized a series of ZnxCo1−xS (0 ≤ x ≤ 0.4) thin films via a facile chemical solution growth technique. To gain insight of the materials properties we have opted for different characterization techniques and are reporting our observations pertaining to the elemental analysis, magneto-topography, optical and electrical transport studies. Excellent agreement of binding energy values for Co2p, Zn2p and S2p levels in elemental analysis concluded the oxidation states as Co2+, Zn2+ and S2−. Magnetic force microscopy confirmed the existence of randomly distributed magnetic domains mimicking the surface topography. The optical studies determined the high absorption coefficient (α ≈ 104 to 105 cm−1) in the as-grown thin films. The optical band gap is found to be increased non-linearly from 1.59 to 2.50 eV as the composition parameter (x) is increased. The D.C. electrical conductivity measurements showed decrease in conductivity with increased composition parameter (x). The thermoelectric studies confirmed degenerative nature of the as-deposited thin films with n-type conduction.

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Metadata
Title
The optical and electrical transport studies of ZnxCo1−xS thin films
Authors
S. S. Kamble
A. Sikora
S. L. Deshmukh
S. T. Pawar
G. T. Chavan
D. P. Dubal
N. B. Chaure
N. N. Maldar
L. P. Deshmukh
Publication date
27-05-2016
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 12/2016
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-016-5064-6