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Photoelectrochemical properties of electrodeposited CdSe and CdSe/ZnSe thin films in sulphide-polysulphide and ferro-ferricyanide redox systems
Affiliation:1. Institut für Biophysikalische Chemie, Fakultät für Chemie, Universität Wien, Althanstr. 14, A-1090 Wien, Austria;2. Institut für Anorganische Chemie, Fakultät für Chemie, Universität Wien, Althanstr. 14, A-1090 Wien, Austria;3. Institut für Mineralogie und Kristallographie, Universität Wien, Althanstr. 14, A-1090 Wien, Austria;4. Department of Chemical Theory of Drugs, Faculty of Pharmacy, Comenius University, Kalinciakova 8, SK-832 32 Bratislava, Slovakia
Abstract:Polycrystalline, (111) textured single CdSe and binary CdSe/ZnSe thin films were prepared by electrodeposition and used as active electrodes in regenerative, liquid junction solar cells with aqueous sulphide-polysulphide or ferro-ferricyanide redox electrolytes. The influence of ZnSe on the photoelectrochemical properties of CdSe was investigated. Microchemical characterization of the cell ingredients was made by X-ray diffraction, scanning microscopy imaging and atomic absorption spectrophotometry. The semiconductor electrodes could behave as rectifying diodes within certain conditions, though cell operation was inevitably associated to chemical changes of the electrodes. Aspects of the corrosion effects are discussed and the stabilization of particular cells is demonstrated.
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