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Efficient photoelectrochemical water oxidation over cobalt-phosphate (Co-Pi) catalyst modified BiVO4/1D-WO3 heterojunction electrodes

机译:磷酸钴(Co-Pi)催化剂修饰的BiVO4 / 1D-WO3异质结电极上的高效光电化学水氧化

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摘要

We report the design, synthesis and photoelectrochemical characterization of cobalt phosphate (Co-Pi) oxygen evolution catalyst modified heterojunction photoelectrodes consisting of one-dimensional WO3 nanorods (1D-WO3) and highly porous BiVO4 layers. The 1D-WO3 nanorods were prepared by the decomposition of the tetrabutylammonium decatungstate precursor in the presence of poly(ethylene glycol) as a binding agent. The porous BiVO4 layers were spray deposited using a surfactant assisted metal-organic decomposition method. The Co-Pi oxygen evolution catalyst was deposited onto the BiVP4/1D-WO3/FTO heterojunction electrode using a photoassisted electrodeposition method. The Co-Pi catalyst modified heterojunction electrodes exhibited a sustained enhancement in the photocurrent compared to the unmodified BiVO4/1D-WO3/FTO heterojunction electrodes. The improved photoelectrochemical properties profited from the enhanced charge carrier separation achieved through the integration of highly porous BiVO4 layers on top of 1D-WO3 nanorods and from the superior kinetics due to the presence of the Co-Pi oxygen evolution catalyst on top of BiVO4/1D-WO3/FTO heterojunction electrodes.
机译:我们报告了由一维WO3纳米棒(1D-WO3)和高度多孔的BiVO4层组成的磷酸钴(Co-Pi)析氧催化剂修饰的异质结光电极的设计,合成和光电化学特性。 1D-WO3纳米棒是通过在聚乙二醇作为粘合剂的存在下分解四丁基铵的去钨酸盐前体而制备的。使用表面活性剂辅助的金属有机分解方法将BiVO4多孔层喷涂。使用光辅助电沉积方法将Co-Pi析氧催化剂沉积到BiVP4 / 1D-WO3 / FTO异质结电极上。与未修饰的BiVO4 / 1D-WO3 / FTO异质结电极相比,Co-Pi催化剂修饰的异质结电极在光电流方面表现出持续的增强。通过在1D-WO3纳米棒顶部集成高度多孔的BiVO4层以及在BiVO4 / 1D顶部存在Co-Pi析氧催化剂而获得的优异动力学性能,改善了光电化学性能-WO3 / FTO异质结电极。

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