TiO2 single crystal with four-truncated-bipyramid morphology as an efficient photocatalyst for hydrogen production

Small. 2013 Jul 22;9(14):2452-9. doi: 10.1002/smll.201300841. Epub 2013 Jun 19.

Abstract

Diverse titanium dioxide (TiO2 ) nanostructures have attracted much attention recently due to their potential application in photocatalytic and photovoltaic fields. Here, the synthesis of a TiO2 single crystal with a novel four-truncated-bipyramid morphology is reported for the first time, produced by a simple hydrothermal method. Both peroxo titanic acid precursor and hydrofluoric acid capping agent are essential for the formation of this unique morphology. Moreover, the as-prepared TiO2 photocatalyst exhibits excellent hydrogen production activity from an ethanol-water solution, which is attributed to exposure of both high-energy {001} oxidative and low-energy {101} reductive facets in an optimal ratio. The current findings will contribute greatly to development of more novel photocatalysts with controllable microscopic structures for hydrogen production.

Keywords: TiO2; bipyramids; hydrogen production; photocatalysts; single crystals.