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首页> 外文期刊>RSC Advances >Comparison of sandwich and fingers-crossing type WO3/BiVO4 multilayer heterojunctions for photoelectrochemical water oxidation
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Comparison of sandwich and fingers-crossing type WO3/BiVO4 multilayer heterojunctions for photoelectrochemical water oxidation

机译:夹心式和交叉式WO3 / BiVO4多层异质结在光电化学水氧化中的比较

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摘要

WO3 and BiVO4 thin films were spin-coated on FTO in a intersecting way with the WO3 and BiVO4 overlapping only in the center part, resulting in multilayer fingers-crossing thin films (fingers-crossing heterojunction). Samples with only an overlapped area (sandwich heterojunction) were obtained by cutting off the non-overlapped area of both the WO3 and BiVO4 layers (the nodes) as a counterpart for comparison. The influence of layer number, layer thickness and junction type on the photoelectrochemical (PEC) water splitting performance under simulated solar light for the obtained heterojunctions was investigated. XRD, SEM, XPS and UV-vis absorption measurements were conducted to investigate the structural properties and morphology. The photocurrent density of the sandwich heterojunction is higher than that of the fingers-crossing heterojunction at a low applied bias. The IPCE shows that both the fingers-crossing heterojunction and sandwich heterojunction can effectively utilize light up to 510 nm. Mott-Schottky plots show that the sandwich heterojunction has a more negative flat band potential, which is desirable for water splitting, than the fingers-crossing heterojunction. In addition, the mechanism of photogenerated carrier separation for these two heterojunctions was discussed.
机译:将WO3和BiVO4薄膜以相交的方式旋涂在FTO上,使WO3和BiVO4仅在中心部分重叠,从而形成多层手指交叉的薄膜(手指交叉的异质结)。通过切除WO3和BiVO4层(节点)的非重叠区域作为比较对象,获得仅具有重叠区域(三明治异质结)的样品。研究了在获得的异质结的模拟太阳光下,层数,层厚度和结类型对光化学(PEC)水分解性能的影响。进行了XRD,SEM,XPS和UV-vis吸收测量,以研究其结构性质和形态。在低施加偏压下,夹层异质结的光电流密度高于交叉指状异质结的光电流密度。 IPCE显示,交叉指形异质结和夹心异质结均可有效利用高达510 nm的光。莫特-肖特基图表明,夹层异质结比手指交叉异质结具有更大的负平带电势,这对于水分解是理想的。此外,讨论了这两个异质结的光生载流子分离机理。

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