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Hydrogen Evolution from Water by Visible Light, a Homogeneous Three Component Test System for Redox Catalysis

Helvetica Chimica Acta · 1978 · Vol. 61(7) · pp. 2720–2730
K. KalyanasundaramJ. KiwiMichaël Grätzel

Abstract

Abstract Irradiation by visible light of a neutral aqueous solution containing Ru (bipy) as a sensitizer, methylviologen (MV +2 ) as an electron acceptor and triethanolamine or cysteine as an electron donor leads to the formation of stable methylviologen radical cation (MV + ). The kinetics and mechanism of the photoinduced reactions occurring in such a system were explored by laser photolysis technique. In the presence of Adams catalyst MV + is reoxidized by water under simultaneous evolution of hydrogen. Optimum conditions for the water reduction under continuous illumination are elaborated and implications for an energy conversion system discussed.

Electrochemical Analysis and ApplicationsElectrocatalysts for Energy ConversionAdvanced Photocatalysis TechniquesChemistryTriethanolaminePhotochemistryAqueous solutionCatalysisPhotodissociationRedoxKineticsVisible spectrumWater splitting
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Hydrogen Evolution from Water by Visible Light, a Homogeneous Three Component Test System for Redox Catalysis · Scinovex