Article ID Journal Published Year Pages File Type
1282306 International Journal of Hydrogen Energy 2012 5 Pages PDF
Abstract

We have shown the effect of mono and co-doping of non-metallic anion atoms on the electronic structure in BiTaO4 using the first-principles method. It can improve the photocatalytic efficiency for hydrogen production in the presence of visible sunlight. It is found that the band gap of BiTaO4 has been reduced significantly up to 54% with different non-metallic doping. Electronic structure analysis shows that the doping of nitrogen is able to reduce the band gap of BiTaO4 due to the impurity N 2p state at the upper edge of the valence band. In case of C or C-S doped BiTaO4, double occupied (filled) states have been observed deep inside the band gap of BiTaO4. The large reduction of band gap has been achieved, which increases the visible light absorption. These results indicate that the doping of non-metallic element in BiTaO4 is a promising candidate for the photocatalyst due to its reasonable band gap.

► Band gap engineering for efficient photocatalyst. ► Anion doped BiTaO4 for hydrogen production. ► Redox potential alignment with respect to Band edges. ► Optical absorption for mono or co-doped BiTaO4.

Related Topics
Physical Sciences and Engineering Chemistry Electrochemistry
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