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Dynamics of charge transport and recombination in ZnO nanorod array dye-sensitized solar cells

Dynamics of charge transport and recombination in ZnO nanorod array dye-sensitized solar cells Intensity modulated photovoltage and photocurrent spectroscopies reveal that photoanodes based on nanorod arrays exhibit dramatically faster electron transport while retaining similar electron lifetimes (recombination times) compared to standard photoanodes assembled from colloidal nanoparticles. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Physical Chemistry Chemical Physics Royal Society of Chemistry

Dynamics of charge transport and recombination in ZnO nanorod array dye-sensitized solar cells

Royal Society of Chemistry — Oct 11, 2006

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Royal Society of Chemistry
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Abstract

Intensity modulated photovoltage and photocurrent spectroscopies reveal that photoanodes based on nanorod arrays exhibit dramatically faster electron transport while retaining similar electron lifetimes (recombination times) compared to standard photoanodes assembled from colloidal nanoparticles.

Journal

Physical Chemistry Chemical PhysicsRoyal Society of Chemistry

Published: Oct 11, 2006

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