Highly efficient photocatalytic conversion of solar energy to hydrogen by WO 3 /BiVO 4 core–shell heterojunction nanorods

Applied Nanoscience(2018)

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摘要
Photocatalytic splitting of water under solar light has proved itself to be a promising approach toward the utilization of solar energy and the generation of environmentally friendly fuel in a form of hydrogen. In this work, we demonstrate highly efficient solar-to-hydrogen conversion efficiency of 7.7% by photovoltaic–photoelectrochemical (PV–PEC) device based on hybrid MAPbI 3 perovskite PV cell and WO 3 /BiVO 4 core–shell nanorods PEC cell tandem that utilizes spectral splitting approach. Although BiVO 4 is characterized by intrinsically high recombination rate of photogenerated carriers, this is not an issue for WO 3 /BiVO 4 core–shell nanorods, where highly conductive WO 3 cores are combined with extremely thin absorber BiVO 4 shell layer. Since the BiVO 4 layer is thinner than the characteristic carrier diffusion length, the photogenerated charge carriers are separated at the WO 3 /BiVO 4 heterojunction before their recombination. Also, such architecture provides sufficient optical thickness even for extremely thin BiVO 4 layer due to efficient light trapping in the core–shell WO 3 /BiVO 4 nanorods with high aspect ratio. We also demonstrate that the concept of fill factor can be used to compare I–V characteristics of different photoanodes regarding their optimization for PV/PEC tandem devices.
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关键词
Water splitting,Photocatalysis,Photoanode,Core–shell heterojunction,Nanorod,Photocurrent
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