Photocatalytic oxidation of ethanethiol on a photoelectrochemical circuit system consisting of a rod-type TiO2 electrode and a silicon solar cell

Photocatalytic oxidation of ethanethiol on a photoelectrochemical circuit system consisting of a... A unique photoelectrochemical circuit system was constructed by connecting a rod-type TiO2 electrode with a Pt electrode through a silicon solar cell. The photoelectrochemical circuit system efficiently oxidized ethanethiol in water into CO2, while the reaction rate strongly depended on the calcination temperature of the rod-type TiO2 electrode. Furthermore, it was found that a negative bias applied to the rod-type TiO2 electrode by a silicon solar cell enhances the oxidation rate of ethanethiol in water. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Research on Chemical Intermediates Springer Journals

Photocatalytic oxidation of ethanethiol on a photoelectrochemical circuit system consisting of a rod-type TiO2 electrode and a silicon solar cell

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Publisher
Springer Netherlands
Copyright
Copyright © 2009 by Springer Science+Business Media BV
Subject
Chemistry; Inorganic Chemistry ; Physical Chemistry ; Catalysis
ISSN
0922-6168
eISSN
1568-5675
D.O.I.
10.1007/s11164-009-0060-6
Publisher site
See Article on Publisher Site

Abstract

A unique photoelectrochemical circuit system was constructed by connecting a rod-type TiO2 electrode with a Pt electrode through a silicon solar cell. The photoelectrochemical circuit system efficiently oxidized ethanethiol in water into CO2, while the reaction rate strongly depended on the calcination temperature of the rod-type TiO2 electrode. Furthermore, it was found that a negative bias applied to the rod-type TiO2 electrode by a silicon solar cell enhances the oxidation rate of ethanethiol in water.

Journal

Research on Chemical IntermediatesSpringer Journals

Published: Aug 11, 2009

References

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