In a photoelectrochemical cell, the most concerned issue in the nanostructured TiO 2 electrode is the charge transport, which consists of the internal movement of electrons in TiO 2 nanostructures and the intergrain charge transfer. Here, inspired by electrochemical studies on different polymorphs of TiO 2 , it is proposed to bridge the adjacent building blocks and fence the electron transport highways in TiO 2 electrodes by surface rutilization of anatase nanorods. The ultrathin rutilized layer completely coated on the anatase surface has a slightly higher conduction band edge than that of anatase. The obtained surface rutilized anatase nanorods can not only improve the intergrain charge transfer while maintaining fast electron transport within anatase but also minimize the internal energy consumption and protect the electrons in TiO 2 electrodes from recombination, which are beneficial to the charge collection and can significantly improve the photovoltaic performance of photoelectrochemical cells.
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Chen et al. (2015) studied this question.
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