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Ultrasonic spray pyrolysis fabrication of solid and hollow PbWO4 spheres with structure-directed photocatalytic activity

机译:具有结构定向光催化活性的实心和空心PbWO4球的超声喷雾热解制备

摘要

Solid and hollow PbWO4 spheres were fabricated by a one-step and template-free ultrasonic spray pyrolysis (USP) using lead nitrate and ammonium metatungstate hydrate as precursors. The characteristics of the resulting samples were investigated by X-ray diffraction, scanning electron microscopy, transmission electron microscopy, N2 adsorption/desorption, and UV-vis diffuse reflectance spectroscopy in detail. The addition of citric acid (CA) to the precursor solution played a crucial role in producing hollow structured spheres. The hollow PbWO4 spheres were composed of single-crystal nanoparticles. On the basis of the characterization and experimental observations, a possible mechanism on the formation of solid and hollow PbWO4 spheres was proposed. Gaseous products generated due to the decomposition of CA in the pyrolysis process shaped the final hollow morphology. The results also indicated that the CA addition could decrease the crystal size of hollow PbWO4. The specific surface areas and pore volume of hollow PbWO4 spheres were increased simultaneously due to the CA decomposition compared with solid PbWO4 spheres produced without CA addition. The PbWO4 spheres were tested as photocatalyst for NO removal in air. The hollow structured PbWO4 spheres were found to exhibit superior photocatalytic activity to solid spheres due to the differences in microstructure and morphology. The result acquired may shed light on general fabrication strategy for designing hollow structured materials by USP.
机译:使用硝酸铅和偏钨酸铵水合物作为前体,通过一步和无模板的超声喷雾热解(USP)制备了固态和空心PbWO4球。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/解吸和UV-可见漫反射光谱详细研究了所得样品的特性。在前体溶液中添加柠檬酸(CA)在生产空心结构球中起着至关重要的作用。空心PbWO4球由单晶纳米颗粒组成。在表征和实验观察的基础上,提出了形成实心和空心PbWO4球的可能机理。由于CA在热解过程中分解而产生的气态产物使最终的中空形态得以形成。结果还表明,添加CA可以减小空心PbWO4的晶体尺寸。与不添加CA的固体PbWO4球相比,由于CA分解,空心PbWO4球的比表面积和孔体积同时增加。测试了PbWO4球作为在空气中去除NO的光催化剂。发现中空结构化的PbWO4球由于微观结构和形态的差异而显示出比固体球更好的光催化活性。获得的结果可能会阐明USP设计中空结构材料的一般制造策略。

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