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Photoelectrochemical behavior of hierarchically structured Si/WO3 core-shell tandem photoanodes
Robert H Coridan1, Kevin A Arpin, Bruce S Brunschwig
1Division of Chemistry and Chemical Engineering, Beckman Institute, Kavli Nanoscience Institute, and the Joint Center for Artificial Photosynthesis, California Institute of Technology , 210 Noyes Laboratory, Pasadena, California 91125, United States.
Abstract:
WO3 thin films have been deposited in a hierarchically structured core-shell morphology, with the cores consisting of an array of Si microwires and the shells consisting of a controlled morphology WO3 layer. Porosity was introduced into the WO3 outer shell by using a self-assembled microsphere colloidal crystal as a mask during the deposition of the WO3 shell. Compared to conformal, unstructured WO3 shells on Si microwires, the hierarchically structured core-shell photoanodes exhibited enhanced near-visible spectral response behavior, due to increased light absorption and reduced distances over which photogenerated carriers were collected. The use of structured substrates also improved the growth rate of microsphere-based colloidal crystals and suggests strategies for the use of colloidal materials in large-scale applications.
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