4.7 Article Proceedings Paper

Hydrogen evolution by water splitting using novel composite zeolite-based photocatalyst

Journal

CATALYSIS TODAY
Volume 129, Issue 3-4, Pages 428-434

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.cattod.2006.09.041

Keywords

hydrogen; water splitting; visible light; zeolite-based photocatalyst

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Novel zeolite-based material showing photocatalytic properties in the visible light have been synthesized by incorporating TiO2, heteropolyacid (HPA) and transition metal, namely cobalt. This material shows high efficiency for water splitting under visible light irradiation. Hydrogen generation to the tune of 2171 mu mol/h/g of TiO2 has been achieved for the composite photocatalyst synthesized as compared to H-2 evolution rate to the tune of 131.6 mu mol/h/g of TiO2 for Degussa P25. This suggests that the TiO2 which gets effectively dispersed and stabilized on the surface of zeolite works synergistically with cobalt and heteropolyacid to make the material active in visible light for evolution of hydrogen from water. TiO2 is the photocatalyst, HPA functions as the dye sensitiser as well as redox system; zeolite functions as support matrix and as electron acceptor in synergy with cobalt. The probable mechanism for improved hydrogen evolution rate using such composite photocatalyst has been discussed. (c) 2007 Elsevier B.V. All rights reserved.

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