光电流
材料科学
电极
光催化
光降解
薄膜
纳米技术
罗丹明B
化学气相沉积
化学工程
沉积(地质)
能量转换效率
光电化学电池
光电子学
化学
催化作用
沉积物
古生物学
物理化学
工程类
生物
电解质
生物化学
作者
Bandar Y. Alfaifi,Hossein Bayahia,Asif Ali Tahir
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2019-05-17
卷期号:9 (5): 755-755
被引量:19
摘要
Nanostructured Bi2WO6 thin film electrodes with enhanced solar energy conversion and photocatalytic properties have been fabricated using Aerosol-Assisted Chemical Vapor Deposition (AACVD). By conveniently controlling the deposition process parameters, Bi2WO6 electrodes were fabricated with nanoplates and hierarchical buckyball-shaped microsphere structures morphology. A detailed study has been conducted to correlate the structure and morphology with the photoelectrochemical (PEC) and photocatalytic dye degradation performance. The PEC investigations revealed that the hierarchical buckyball-shaped microsphere structured Bi2WO6 electrodes have shown the photocurrent density of 220 μAcm−2 while nanoplates have a photocurrent density of 170 μAcm−2 at 0.23 V (vs. Ag/AgCl/3M KCl) under AM1.5 illumination. The PEC characterization of Bi2WO6 electrodes also reveals that the photocurrent density and photocurrent onset potential is strongly dependent on the orientation and morphology, hence the deposition parameters. Similarly, the methylene blue (MB) and rhodamine B (RhB) photodegradation performance of Bi2WO6 electrodes also show a strong correlation with morphology. This finding provides an appropriate route to engineer the energetic and interfacial properties of Bi2WO6 electrode to enhance solar energy conversion and the photocatalytic performance of semiconductor materials.
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