Thin Films of Titanium and Tin Oxides and Semiconductor Structures on Their Basis Obtained by Pyrolytic Pulverization: Preparation, Characterization, and Corrosion Properties [Articol]
Date
2007
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Abstract
Peculiarities of obtaining of tin oxide and titanium oxide layers and semiconductor structures on
their basis are described. The X-ray diffraction data show that the SnO2 and TiO 2 layers possess the tetragonal
crystal structure (anatase modification for TiO2). The results of analysis of the elemental composition and
impedance investigations of the fabricated structures in model chloride–sulfate solutions demonstrate that the
oxide/SiO2/Si structures are obtained if Si substrates are used. In the case of InP substrates, the oxide layer at
the interface is not detected and the corresponding structure is oxide/InP. The results of investigations of corro-
sion show that a substantial shift of the corrosion potential to the anode region is observed in the case of depo-
sition of SnO2 and TiO2 oxide layers on Si and InP crystals and fabrication of corresponding semiconductor
structures. This demonstrates the possibility of the use of these materials in photoelectrochemical applications.
Description
BERSIROVA, Oxana; Leonid BRUC; Alexandr DICUSAR; Mihail CARAMAN; Svetlana SIDELINICOVA; Alexei SIMAŞCHEVICI; Dormidont ŞERBAN și Iu. IAPONTEVA. Thin Films of Titanium and Tin Oxides and Semiconductor Structures on Their Basis Obtained by Pyrolytic Pulverization: Preparation, Characterization, and Corrosion Properties . Surface Engineering and Applied Electrochemistry, 2007. nr. 6(43), pp.443-452. ISSN 1068-3755.
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Citation
BERSIROVA, Oxana; Leonid BRUC; Alexandr DICUSAR; Mihail CARAMAN; Svetlana SIDELINICOVA; Alexei SIMAŞCHEVICI; Dormidont ŞERBAN și Iu. IAPONTEVA. Thin Films of Titanium and Tin Oxides and Semiconductor Structures on Their Basis Obtained by Pyrolytic Pulverization: Preparation, Characterization, and Corrosion Properties . Surface Engineering and Applied Electrochemistry, 2007. nr. 6(43), pp.443-452. ISSN 1068-3755.