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    Investigation of dark and light conductivities in calcium doped bismuth ferrite thin films

    , Article Materials Letters ; Volume 65, Issue 19-20 , October , 2011 , Pages 3086-3088 ; 0167577X (ISSN) Kianinia, M ; Ahadi, K ; Nemati, A ; Sharif University of Technology
    2011
    Abstract
    Electrical conductivities in dark and light were investigated in Calcium doped Bismuth Ferrite thin films. Higher dark conductivity, in the order of 10 times higher than conductivity of bismuth ferrite, was observed for Bi 0.85Ca0.15FeO3 - δ. Structural analyses using Rietveld refinement showed a deviation from volume reduction for Bi 0.85Ca0.15FeO3 - δ which could be the reason of abnormally high conductivity for this compound. Although higher calcium doping reduced conductivity, photoconductivity was observed again. Atomic Force Microscopy investigations showed that surface roughness and grain size decreased with increasing calcium concentration. Enhanced photoconductivity is reported for... 

    Photoconductivity and diode effect in Bi rich multiferroic BiFeO 3 thin films grown by pulsed-laser deposition

    , Article Journal of Materials Science: Materials in Electronics ; Volume 22, Issue 7 , 2011 , Pages 815-820 ; 09574522 (ISSN) Ahadi, K ; Mahdavi, S. M ; Nemati, A ; Kianinia, M ; Sharif University of Technology
    2011
    Abstract
    Bismuth ferrite, BiFeO 3, is almost the only material that is simultaneously magnetic and a strong ferroelectric at room temperature. As a result it is the most investigated multiferroic material. In this study, bismuth ferrite thin films were deposited on silicon wafer (100) and glass by pulsed-laser deposition and their structural, optical, and electrical properties were measured. Our study indicates that Bi richness in these films can stimulate formation of oxygen vacancy in the system which in its turn leads to delocalization of carriers and a more intensified photoconductivity response. X-ray diffraction analysis revealed formation of BiFeO 3 (BFO), but it also showed formation of Bi 2O...