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TiO2/BiVO4 Nanowire Heterostructure Photoanodes Based on Type II Band Alignment.


ABSTRACT: Metal oxides that absorb visible light are attractive for use as photoanodes in photoelectrosynthetic cells. However, their performance is often limited by poor charge carrier transport. We show that this problem can be addressed by using separate materials for light absorption and carrier transport. Here, we report a Ta:TiO2|BiVO4 nanowire photoanode, in which BiVO4 acts as a visible light-absorber and Ta:TiO2 acts as a high surface area electron conductor. Electrochemical and spectroscopic measurements provide experimental evidence for the type II band alignment necessary for favorable electron transfer from BiVO4 to TiO2. The host-guest nanowire architecture presented here allows for simultaneously high light absorption and carrier collection efficiency, with an onset of anodic photocurrent near 0.2 V vs RHE, and a photocurrent density of 2.1 mA/cm(2) at 1.23 V vs RHE.

SUBMITTER: Resasco J 

PROVIDER: S-EPMC4827543 | biostudies-literature | 2016 Feb

REPOSITORIES: biostudies-literature

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TiO2/BiVO4 Nanowire Heterostructure Photoanodes Based on Type II Band Alignment.

Resasco Joaquin J   Zhang Hao H   Kornienko Nikolay N   Becknell Nigel N   Lee Hyunbok H   Guo Jinghua J   Briseno Alejandro L AL   Yang Peidong P  

ACS central science 20160203 2


Metal oxides that absorb visible light are attractive for use as photoanodes in photoelectrosynthetic cells. However, their performance is often limited by poor charge carrier transport. We show that this problem can be addressed by using separate materials for light absorption and carrier transport. Here, we report a Ta:TiO2|BiVO4 nanowire photoanode, in which BiVO4 acts as a visible light-absorber and Ta:TiO2 acts as a high surface area electron conductor. Electrochemical and spectroscopic mea  ...[more]

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