Long-lived charge separated states in nanostructured semiconductor photoelectrodes for the production of solar fuels.

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Summary

A range of promising material design approaches to increasing charge carrier lifetimes are discussed, focusing upon semiconductor photoelectrodes for water photolysis and carbon dioxide reduction and a key consideration of the review is the design of such interfaces to achieve a sufficient increase in charge carrier lifetime with a high quantum yield.

Type
review
Published
2013-02-25
Cited by
266
References
87

Keywords

Semiconductor, Solar fuel, Charge carrier, Artificial photosynthesis, Range (aeronautics)

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