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Photovoltaic properties of (Pb,La)(Zr,Ti)O3 films with different crystallographic orientations
63
Citations
17
References
2005
Year
Materials ScienceElectrical EngineeringOptical MaterialsEngineeringThin-film FabricationMaterial AnalysisSolar PowerOptical PropertiesO3 FilmsOrganic Solar CellApplied PhysicsLayered StructurePlasmon-enhanced PhotovoltaicsThin FilmsSolar CellsRandom FilmsPhotovoltaicsThin Film Processing
Photovoltaic (Pb,La)(Zr,Ti)O3 films in a layered structure of different crystallographic orientations are fabricated by an optimized metalorganic deposition method. Such films of (001) orientation exhibit a photovoltaic electrical power of approximately 20 times higher than that of random films. The anisotropic optical properties of the oriented films, including dark conductivity, photoconductivity, and photovoltaic tensor surfaces, are obtained quantitatively. These results show that the photovoltaic output current and power of the oriented films are highly improved to be equal to those of semiconductors and suitable for application in the optical sensor of microelectromechanical systems.
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