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Photocatalytic removal of NO and HCHO over nanocrystalline Zn2SnO4 microcubes for indoor air purification

机译:纳米Zn2SnO4微粒对室内空气净化的光催化去除NO和HCHO

摘要

Nanocrystalline Zn2SnO4 microcubes were hydrothermally synthesized and systematically characterized by XRD, SEM, TEM, XPS, N2 adsorption-desorption, and UV-vis DRS analysis. The resulting Zn2SnO4 microcubes with the edge size ranging from 0.8 to 1.2μm were composed of numerous nanoparticles with size of 10-20nm, and their optical band gap energy was estimated to be 3.25eV from the UV-vis diffuse reflectance spectra. On degradation of nitrogen monoxide (NO) and formaldehyde (HCHO) at typical concentrations for indoor air quality, these nanocrystalline Zn2SnO4 microcubes exhibited superior photocatalytic activity to the hydrothermally synthesized ZnO, SnO2, and Degussa TiO2 P25, as well as C doped TiO2 under UV-vis light irradiation. This enhanced photocatalytic activity of the nanocrystalline Zn2SnO4 microcubes was attributed to their bigger surface areas, smaller particle size, special porous structures, and special electronic configuration. The nanocrystalline Zn2SnO4 microcubes were chemically stable as there was no obvious deactivation during the multiple photocatalytic reactions. This work presents a promising approach for scaling-up industrial production of Zn2SnO4 nanostructures and suggests that the synthesized nanocrystalline Zn2SnO4 microcubes are promising photocatalysts for indoor air purification.
机译:水热合成纳米晶态的Zn2SnO4微晶,并通过XRD,SEM,TEM,XPS,N2吸附-脱附和UV-vis DRS分析进行系统表征。所得的Zn2SnO4晶粒的边缘尺寸在0.8到1.2μm之间,由许多尺寸为10-20nm的纳米颗粒组成,根据紫外可见漫反射光谱估计其光学带隙能量为3.25eV。在室内空气中典型浓度的一氧化氮(NO)和甲醛(HCHO)降解后,这些纳米晶状的Zn2SnO4微立方​​体表现出优于水热合成的ZnO,SnO2和Degussa TiO2 P25以及在UV下掺C的TiO2优异的光催化活性。 -可见光照射。纳米晶Zn2SnO4微立方​​体的这种增强的光催化活性归因于其更大的表面积,更小的粒径,特殊的多孔结构和特殊的电子构型。纳米晶Zn2SnO4微立方​​化学稳定,因为在多次光催化反应过程中没有明显的失活。这项工作为扩大Zn2SnO4纳米结构的工业生产提供了一种有前途的方法,并表明合成的纳米晶Zn2SnO4微立方​​体是用于室内空气净化的有前途的光催化剂。

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