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
- OpenAlex
- https://openalex.org/W2101044714
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23572262
Keywords
Semiconductor, Solar fuel, Charge carrier, Artificial photosynthesis, Range (aeronautics)
References
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Cited by
- Improving the efficiency of electrochemical CO2 reduction using immobilized manganese complexes.
- Modelling materials for solar fuel synthesis by artificial photosynthesis; predicting the optical, electronic and redox properties of photocatalysts
- Nanostructuring Confinement for Controllable Interfacial Charge Transfer.
- Supporting 1-D AgVO3 nanoribbons on single layer 2-D graphitic carbon nitride ultrathin nanosheets and their excellent photocatalytic activities
- Synthesis and Functional Properties of BiFeO₃ and Bi₂FeCrO₆ based Nanostructures and Thin Films.
- Significantly Enhanced Visible Light Photoelectrochemical Activity in TiO₂ Nanowire Arrays by Nitrogen Implantation.
- Control of charge transports in semiconductor superlattices using an acoustic wave
- Hexamolybdenum clusters supported on graphene oxide: Visible-light induced photocatalytic reduction of carbon dioxide into methanol
- Solar fuel production: Strategies and new opportunities with nanostructures
- Metal oxide semiconductors employed as photocatalysts during water splitting
- Photokatalysatoren auf Graphenbasis für die Produktion von Solarbrennstoffen
- Graphene-Based Photocatalysts for Solar-Fuel Generation.
- Photocatalytic proton reduction with ruthenium and cobalt complexes immobilized on fumed reversed-phase silica
- Size-selective incorporation of donor–acceptor linked dyad cations into zeolite Y and long-lived charge separation
- Photo-assisted oxidation of thiols to disulfides using cobalt “Nanorust” under visible light
- Kinetic analysis of photoelectrochemical water oxidation by mesostructured Co-Pi/α-Fe2O3 photoanodes
- In situ observation of model catalysts under reaction conditions using X-ray core-level spectroscopy.
- Generation of Hydrogen by Visible Light-Induced Water Splitting with the Use of Semiconductors and Dyes.
- Effects of morphology and exposed facets of α-Fe2O3 nanocrystals on photocatalytic water oxidation
- Ni–Cu alloy nanoparticles loaded on various metal oxides acting as efficient catalysts for photocatalytic H2 evolution
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