Tin oxide films have been prepared on glass substrates by spray pyrolysis technique. The electrical and optical properties of undoped and antimony-doped tin oxide films have been studied. The temperature dependence of electron mobility has been analyzed to establish the electron conduction mechanism. Optical properties near the plasma edge have been analyzed using Drude's theory. The dependence of effective mass on carrier concentration has been explained on the basis of nonparabolicity of the conduction band. The shift in the Fermi energy, calculated on the basis of energy dependent effective mass, is consistent with the measured shift in the absorption edge
Tin oxide (SnO2) thin films are having promising properties such as high visible transmittance and l...
Transparent conducting oxides are fundamental for the fabrication of optoelectronic devices includin...
Transparent and conducting films of pure and antimony doped tin oxide have been prepared by spray te...
Tin oxide films have been prepared on glass substrates by spray pyrolysis technique. The electrical ...
This paper presents the structural, electrical, and optical properties of F- and (Sb+F)-doped tin ox...
Undoped, antimony doped and fluorine doped tin oxide films have been prepared by spray pyrolysis tec...
The effects of donor impurities such as antimony, fluorine and antimony plus fluorine on the structu...
Antimony-doped SnO2 films with a resistivity as low as 9×10−4 Ωcm were prepared by spray pyrolysis. ...
Undoped, antimony doped and fluorine doped tin oxide films have been prepared by spray pyrolysis tec...
Transparent conducting tin oxide thin films have been prepared by electron beam evaporation and spra...
Transparent conducting antimony-doped tin oxide SnO2:Sb films were prepared on glass substrates by e...
Films of pure tin oxide SnO2 and in presence of antimony atoms (SnO2-Sb) deposited onto glass substr...
The present study focuses on pure and antimony (Sb)-doped tin oxide thin film and its influence on t...
Antimony doped tin oxide thin films show outstanding optical, electrical and thermal properties. Her...
SnO2 thin films doped Sb and F (AFTO) were prepared on glass by spray pyrolysis technique at differe...
Tin oxide (SnO2) thin films are having promising properties such as high visible transmittance and l...
Transparent conducting oxides are fundamental for the fabrication of optoelectronic devices includin...
Transparent and conducting films of pure and antimony doped tin oxide have been prepared by spray te...
Tin oxide films have been prepared on glass substrates by spray pyrolysis technique. The electrical ...
This paper presents the structural, electrical, and optical properties of F- and (Sb+F)-doped tin ox...
Undoped, antimony doped and fluorine doped tin oxide films have been prepared by spray pyrolysis tec...
The effects of donor impurities such as antimony, fluorine and antimony plus fluorine on the structu...
Antimony-doped SnO2 films with a resistivity as low as 9×10−4 Ωcm were prepared by spray pyrolysis. ...
Undoped, antimony doped and fluorine doped tin oxide films have been prepared by spray pyrolysis tec...
Transparent conducting tin oxide thin films have been prepared by electron beam evaporation and spra...
Transparent conducting antimony-doped tin oxide SnO2:Sb films were prepared on glass substrates by e...
Films of pure tin oxide SnO2 and in presence of antimony atoms (SnO2-Sb) deposited onto glass substr...
The present study focuses on pure and antimony (Sb)-doped tin oxide thin film and its influence on t...
Antimony doped tin oxide thin films show outstanding optical, electrical and thermal properties. Her...
SnO2 thin films doped Sb and F (AFTO) were prepared on glass by spray pyrolysis technique at differe...
Tin oxide (SnO2) thin films are having promising properties such as high visible transmittance and l...
Transparent conducting oxides are fundamental for the fabrication of optoelectronic devices includin...
Transparent and conducting films of pure and antimony doped tin oxide have been prepared by spray te...