Plasmonic photoanodes for solar water splitting with visible light.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 22916955.
- Also identified by DOI 10.1021/nl302796f.
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Abstract
We report a plasmonic water splitting cell in which 95% of the effective charge carriers derive from surface plasmon decay to hot electrons, as evidenced by fuel production efficiencies up to 20-fold higher at visible, as compared to UV, wavelengths. The cell functions by illuminating a dense array of aligned gold nanorods capped with TiO(2), forming a Schottky metal/semiconductor interface which collects and conducts the hot electrons to an unilluminated platinum counter-electrode where hydrogen gas evolves. The resultant positive charges in the Au nanorods function as holes and are extracted by an oxidation catalyst which electrocatalytically oxidizes water to oxygen gas.
Medical subject headings
- Electrochemistry
- Electrodes
- Hydrogen
- Nanostructures
- Oxygen
- Solar Energy
- Surface Plasmon Resonance
- Titanium
- Water