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Sb-doping effects on optical and electrical parameters of SnO2 films

โœ Scribed by E.Kh. Shokr; M.M. Wakkad; H.A. Abd El-Ghanny; H.M. Ali


Publisher
Elsevier Science
Year
2000
Tongue
English
Weight
518 KB
Volume
61
Category
Article
ISSN
0022-3697

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โœฆ Synopsis


Undoped and Sb-doped SnO 2 films ฯณ 100 nm thick have been deposited by electron beam evaporation from bulk samples prepared using sintering technique. Either undoped or Sb-doped SnO 2 films are nearly amorphous, resistive and transparent. With increasing Sb content, the resistivity slightly decreases and then increases with further addition of Sb, which acts as donor and/or acceptor impurity atom in the SnO 2 lattice, respectively. Besides, the doping of Sb inside the SnO 2 lattice was associated with the increase in the film transmission at solar maximum wavelength and the width of optical band gap; which were interpreted in terms of the interaction between the two oxidation states of antimony, Sb 3ฯฉ and Sb 5ฯฉ and the increase of atomic bond energy, respectively. Moreover, the addition of Sb to the SnO 2 lattice has proved to affect significantly on the refractive index, the extinction coefficient, concentration of free carriers, dielectric constant, electric carrier susceptibility and Mott's parameters, which have been explained and correlated to the film microstructure change.


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