DocumentCode
2366632
Title
Growth of red-cell-like Bi2 WO6 hierarchical architectures and their use as recyclable visible-light photocatalysts
Author
Li, Yuanyuan ; Liu, Jinping ; Huang, Xintang
Author_Institution
Dept. of Phys., Central China Normal Univ., Wuhan
fYear
2008
fDate
24-27 March 2008
Firstpage
377
Lastpage
381
Abstract
Bismuth Tungstate (Bi2WO6) that was prepared by solid-state reaction at high temperature in previous work showed catalytic activity in the degradation of organic compound under visible light irradiation. During the past three years, some reports on the fabrication of Bi2WO6 nano-/microstructures in solution and their use as visible-light photocatalysts have emerged. Despite much progress in this exciting field, no report has discussed the repeating usage of this material to degrade organic compounds, partially due to the lack of well-defined Bi2WO6 structures. In this article, red-cell-like Bi2WO6 hierarchical architectures consisting of a number of square nanoplates of average ~30 nm in side length have been firstly synthesized by a hydrothermal method at 180degC for 12 h. These as-prepared microstructures have biconcave configurations with typical sizes of 1.8-2.5 mum, uniform and monodisperse. TEM examination indicates that the single-crystal subunit nanoplates with (001) as their two-dimensional (2D) surfaces assemble orderly using both their edges and faces. The good photocatalytic activity in the degradation of rhodamine B under visible light irradiation (lambdaGt400 nm) is also discussed. Furthermore, we show that these architectures can serve as effective and convenient recyclable photocatalysts, which is crucial to industrial applications. Only a slight decrease in the photodecomposition rate is observed after 5 cycles of the photocatalysis experiment. All these results demonstrate that the red-cell-like Bi2WO6 hierarchical architectures are promising visible-light-driven photocatalysts and have many potential applications in environmental protection.
Keywords
bismuth compounds; catalysis; crystal growth from solution; crystal microstructure; decomposition; nanostructured materials; organic compounds; photochemistry; radiation effects; transmission electron microscopy; Bi2WO6; TEM; biconcave configurations; bismuth tungstate; high temperature effect; hydrothermal method; microstructures; nanostructures; organic compound; photodecomposition; recyclable visible-light photocatalysts; red-cell-like hierarchical architectures; rhodamine B; solid-state reaction; square nanoplates; temperature 180 C; time 12 h; visible light irradiation; Assembly; Bismuth; Fabrication; Microstructure; Organic compounds; Organic materials; Protection; Solid state circuits; Temperature; Thermal degradation;
fLanguage
English
Publisher
ieee
Conference_Titel
Nanoelectronics Conference, 2008. INEC 2008. 2nd IEEE International
Conference_Location
Shanghai
Print_ISBN
978-1-4244-1572-4
Electronic_ISBN
978-1-4244-1573-1
Type
conf
DOI
10.1109/INEC.2008.4585509
Filename
4585509
Link To Document