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Ultrasonic spray pyrolysis synthesis of porous Bi2WO6 Microspheres and their visible-light-induced photocatalytic removal of NO

机译:多孔Bi2WO6微球的超声喷雾热解合成及其可见光诱导的NO去除

摘要

In this study, porous Bi2WO6 microsphere photocatalysts were obtained via the ultrasonic spray pyrolysis method using bismuth citrate and tungstic acid as precursors in basic aqueous solution. The characteristics of the resulting samples were investigated in detail by X-ray diffraction, scanning electron microscopy, transmission electron microscopy, N2 adsorption/desorption, X-ray photoelectron spectroscopy, and UV-vis diffuse reflectance spectroscopy. The resulting porous Bi 2WO6 microsphere was of high crystallinity, which means fewer traps and stronger photocatalytic activity. The band-gap energy of Bi 2WO6 microspheres estimated from the (αh-) 2 versus photon energy (h-) plots was 2.92 eV. The formation of the porous structure in the as-prepared microspheres can be ascribed to the existence of citrate anions and in situ generated carbon residues that can serve as capping agents and templates, respectively, during the synthesis processes. It was found that the synthesis temperature was an important parameter controlling the morphology of the Bi2WO6 microspheres. As compared with the bulk Bi2WO6 sample, the resulting porous Bi2WO6 microspheres demonstrated superior photocatalytic activities on the removal of NO under either visible light or simulated solar light irradiation. The highest NO removal rates were 110 and 27 ppb/min for the porous Bi2WO6 sample under solar light and visible light (λ 400 nm) irradiation, respectively. On the basis of the analysis of the characterization and experimental observations, a possible mechanism on the formation of porous Bi2WO6 microspheres was also proposed.
机译:本研究以柠檬酸铋和钨酸为前驱体,在碱性水溶液中通过超声喷雾热解法制备了多孔Bi2WO6微球光催化剂。通过X射线衍射,扫描电子显微镜,透射电子显微镜,N 2吸附/解吸,X射线光电子能谱和UV-可见漫反射光谱来详细研究所得样品的特性。所得的多孔Bi 2WO6微球具有高结晶度,这意味着陷阱更少,光催化活性更强。从(αh-)2对光子能量(h-)的图估计的Bi 2WO6微球的带隙能量为2.92 eV。所制备的微球中多孔结构的形成可以归因于柠檬酸根阴离子的存在和在合成过程中分别用作封端剂和模板的原位生成的碳残基。发现合成温度是控制Bi 2 WO 6微球形态的重要参数。与块状Bi2WO6样品相比,所得的多孔Bi2WO6微球在可见光或模拟太阳光照射下对NO的去除表现出优异的光催化活性。多孔Bi2WO6样品在太阳光和可见光(λ> 400 nm)照射下的最高NO去除率分别为110 ppb / min和27 ppb / min。在表征分析和实验观察的基础上,提出了形成多孔Bi2WO6微球的可能机理。

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