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Surface Properties and Photocatalytic Activity of KTaO3, CdS, MoS2 Semiconductors and Their Binary and Ternary Semiconductor Composites

机译:KTaO 3 ,CdS,MoS 2 半导体及其二元和三元半导体复合材料的表面性质和光催化活性

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Single semiconductors such as KTaO3, CdS MoS2 or their precursor solutions were combined to form novel binary and ternary semiconductor nanocomposites by the calcination or by the hydro/solvothermal mixed solutions methods, respectively. The aim of this work was to study the influence of preparation method as well as type and amount of the composite components on the surface properties and photocatalytic activity of the new semiconducting photoactive materials. We presented different binary and ternary combinations of the above semiconductors for phenol and toluene photocatalytic degradation and characterized by X-ray powder diffraction (XRD), UV-Vis diffuse reflectance spectroscopy (DRS), scanning electron microscopy (SEM), Brunauer–Emmett–Teller (BET) specific surface area and porosity. The results showed that loading MoS2 onto CdS as well as loading CdS onto KTaO3 significantly enhanced absorption properties as compared with single semiconductors. The highest photocatalytic activity in phenol degradation reaction under both UV-Vis and visible light irradiation and very good stability in toluene removal was observed for ternary hybrid obtained by calcination of KTaO3, CdS, MoS2 powders at the 10:5:1 molar ratio. Enhanced photoactivity could be related to the two-photon excitation in KTaO3-CdS-MoS2 composite under UV-Vis and/or to additional presence of CdMoO4 working as co-catalyst.
机译:通过煅烧或水/溶剂热混合溶液法,将诸如KTaO 3 ,CdS MoS 2 的单一半导体或它们的前体溶液合并,形成新型的二元和三元半导体纳米复合材料。 , 分别。这项工作的目的是研究制备方法以及复合组分的类型和数量对新型半导体光敏材料的表面性能和光催化活性的影响。我们介绍了上述半导体对苯酚和甲苯光催化降解的不同二元和三元组合,并通过X射线粉末衍射(XRD),UV-Vis漫反射光谱(DRS),扫描电子显微镜(SEM),Brunauer-Emmett-柜员(BET)的比表面积和孔隙率。结果表明,与单一半导体相比,将MoS 2 加载到CdS上以及将CdS加载到KTaO 3 上都显着增强了吸收性能。通过KTaO 3 ,CdS,MoS 2的煅烧获得的三元杂化物在紫外-可见和可见光照射下均表现出最高的苯酚降解反应的光催化活性,并且具有很好的甲苯去除稳定性。 粉末,摩尔比为10:5:1。增强的光活性可能与紫外-可见光下KTaO 3 -CdS-MoS 2 复合材料中的双光子激发和/或CdMoO 4的额外存在有关作为助催化剂。

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