DocumentCode :
3300647
Title :
Modification of Tantalum (V) Nitride with zirconium oxide for photocatalytic hydrogen production under visible light irradiation
Author :
Yuliati, Leny ; Maeda, Kazuhiko ; Takata, Tsuyoshi ; Domen, Kazunari
Author_Institution :
Ibnu Sina Inst. for Fundamental Sci. Studies, Univ. Teknol. Malaysia, Skudai, Malaysia
fYear :
2012
fDate :
5-7 Jan. 2012
Firstpage :
1
Lastpage :
2
Abstract :
Tantalum (V) Nitride, Ta3N5, is one semiconductor material that able to absorb visible light up to 600 nm. Since Ta3N5 is also stable under light irradiation, the applications of Ta3N5 as a visible light-driven photocatalyst have been investigated for various reactions, such as for hydrogen production from water splitting reaction [1, 2] and organic decompositions [3]. Recently, we successfully reported the synthesis of Ta3N5 nanoparticles using mesoporous carbon nitride as a template [1]. It was found that photocatalytic activity can be enhanced by controlling the particle size to nanometer size. However, there is still lack information on a suitable modification method to increase the photocatalytic activity of Ta3N5. It was reported that nitridation of Zr-Ta mixed oxide produced a solid solution between ZrO2 and TaON, which enhanced the photocatalytic activity of TaON [4]. In the present study, the solid solution between ZrO2 and Ta3N5 was prepared and the photocatalytic activity was investigated for hydrogen evolution under visible light irradiation.
Keywords :
catalysis; hydrogen production; mesoporous materials; nanofabrication; nanoparticles; nitridation; particle size; photochemistry; radiation effects; semiconductor growth; semiconductor materials; solid solutions; tantalum compounds; visible spectra; zirconium compounds; Ta3N5; ZrO2; absorption; hydrogen evolution; hydrogen production; lack information; mesoporous carbon nitride; nanometer size; nanoparticles synthesis; nitridation; organic decompositions; particle size; photocatalytic activity; photocatalytic hydrogen production; semiconductor material; solid solution; tantalum nitride; visible light irradiation; visible light-driven photocatalyst; water splitting reaction; zirconium oxide; Absorption; Diffraction; Production; Radiation effects; Solids; X-ray scattering; Zirconium;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Enabling Science and Nanotechnology (ESciNano), 2012 International Conference on
Conference_Location :
Johor Bahru
Print_ISBN :
978-1-4577-0799-5
Type :
conf
DOI :
10.1109/ESciNano.2012.6149672
Filename :
6149672
Link To Document :
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