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    Photoelectrochemical Investigations of Semiconductor Nanoparticles and Their Application to Solar Cells

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    Publication date
    2014
    Author
    Poppe, J.
    Hickey, Stephen G.
    Eychmüller, A.
    Keyword
    Modulated photocurrent spectroscopy; Multiple exciton generation; Conduction-band electrons; Tio2 nanotube arrays; Time-resolved photoelectrochemistry; Nanocrystalline photovoltaic cells; Optoelectrical impedance method; CDS quantum dots; Carrier multiplication; Optical electrochemistry
    Peer-Reviewed
    Yes
    
    Metadata
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    Abstract
    The objective of this review is to provide an overview concerning what the authors believe to be the most important photoelectrochemical techniques for the study of semiconductor nanoparticles. After a short historical background and a brief introduction to the area of photoelectrochemistry, the working principles and experimental setups of the various static and dynamic techniques are presented. Experimental details which are of crucial importance for their correct execution are emphasized, and applications of the techniques as found in the recent research literature as applied to semiconductor nanoparticles are illustrated.
    URI
    http://hdl.handle.net/10454/10520
    Version
    No full-text available in the repository
    Citation
    Poppe J, Hickey SG and Eychmüller A (2014) Photoelectrochemical Investigations of Semiconductor Nanoparticles and Their Application to Solar Cells. Journal of Physical Chemistry C. 118(30): 17123-17141.
    Link to publisher’s version
    https://doi.org/10.1021/jp5016092
    Type
    Article
    Collections
    Engineering and Informatics Publications

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