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    Electron transport and recombination in dye sensitized solar cells fabricated from obliquely sputter deposited and thermally annealed TiO2 films

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    Date
    2007
    Author
    Waitaa, SM
    Aduda, Bernard O
    Mwabora, JM
    Granqvist, CG
    Lindquist, SE
    Niklasson, GA
    Hagfeldtc, A
    Boschloo, G
    Type
    Article
    Language
    en
    Metadata
    Show full item record

    Abstract
    Dye sensitized solar cells based on annealed titanium dioxide films prepared by oblique reactive DC magnetron sputtering have been investigated in detail. Electron transport and recombination were studied using intensity-modulated photocurrent and photovoltage spectroscopy. Electron transport time as well as lifetime were found to increase upon lowering of the light intensity and to increase upon increasing the thickness of the TiO2 film. The properties are very similar to those observed for solar cells based on colloidal TiO2 films despite the morphologies being very different. In all cases, films are composed of a porous assembly of TiO2 nanocrystals. Grain boundaries with associated trap and/or energy barriers may explain the observed transport properties
    URI
    http://www.sciencedirect.com/science/article/pii/S0022072807001672
    http://erepository.uonbi.ac.ke:8080/xmlui/handle/123456789/35844
    Citation
    Journal of Electroanalytical Chemistry Volume 605, Issue 2, 15 July 2007, Pages 151–156
    Publisher
    Elsevier
     
    Department of Physics, University of Nairobi
     
    Subject
    Nanostructured TiO2
    Mesoporous materials
    Reactive sputtering
    Electron trapping
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    • Faculty of Science & Technology (FST) [4284]

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