A red metallic oxide photocatalyst

Light absorption across the bandgap in semiconductors is exploited in many important applications such as photovoltaics, light-emitting diodes and photocatalytic conversion, but whether coloured metals can be used in such applications is unclear. A red metallic oxide Sr 1- x NbO 3 is now shown to be...

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Veröffentlicht in:Nature materials 2012-07, Vol.11 (7), p.595-598
Hauptverfasser: Xu, Xiaoxiang, Randorn, Chamnan, Efstathiou, Paraskevi, Irvine, John T. S.
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Sprache:eng
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Zusammenfassung:Light absorption across the bandgap in semiconductors is exploited in many important applications such as photovoltaics, light-emitting diodes and photocatalytic conversion, but whether coloured metals can be used in such applications is unclear. A red metallic oxide Sr 1- x NbO 3 is now shown to be effective under visible light to photocatalyse the oxidation of methylene blue, and the oxidation and reduction of water. Light absorption across the bandgap in semiconductors is exploited in many important applications such as photovoltaics, light emitting diodes and photocatalytic conversion. Metals differ from semiconductors in that there is no energy gap separating occupied and unoccupied levels; however, it is still possible to excite electrons between bands. This is evidenced by materials with metallic properties that are also strongly coloured. An important question is whether such coloured metals could be used in light harvesting or similar applications. The high conductivity of a metal would preclude sufficient electric field being available to separate photocarriers; however, the high carrier mobility in a metal might also facilitate kinetic charge separation. Here we clearly demonstrate for the first time the use of a red metallic oxide, Sr 1− x NbO 3 as an effective photocatalyst. The material has been used under visible light to photocatalyse the oxidation of methylene blue and both the oxidation and reduction of water assisted by appropriate sacrificial elements.
ISSN:1476-1122
1476-4660
DOI:10.1038/nmat3312