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首页> 外文期刊>International Journal of Photoenergy >TiO2/ZnS/CdS Nanocomposite for Hydrogen Evolution and Orange II Dye Degradation
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TiO2/ZnS/CdS Nanocomposite for Hydrogen Evolution and Orange II Dye Degradation

机译:TiO2 / ZnS / CdS纳米复合材料用于析氢和橙II染料降解

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摘要

TiO2/ZnS/CdS composites for photocatalytic hydrogen production from water were prepared by homogeneous hydrolysis of aqueous solutions mixture of TiOSO4, ZnSO4, and CdSO4with thioacetamide. Hydrogen evolution was observed in the presence of palladium and platinum nanoparticles deposited on TiO2/ZnS/CdS composites. The morphology was obtained by scanning electron microscopy, the nitrogen adsorption-desorption was used for determination of surface area (BET) and porosity. The method of UV-VIS diffuse reflectance spectroscopy was employed to estimate band-gap energies of prepared TiO2/ZnS/CdS nano-composites. The photocatalytic activity of the prepared samples were assessed by photocatalytic decomposition of Orange II dye in an aqueous slurry under UV irradiation at 365 nm wavelength and visible light up to 400 nm wavelength. Doped titanium dioxide by the CdS increased band-gap energy and doping with ZnS increased photocatalytic activity. The best photocatalytic activity for H2evolution shows sample named TiZnCd7 on surface deposited with palladium, which contains 20.21% TiO2, 78.5% ZnS, and 1.29% CdS.
机译:通过将TiOSO4,ZnSO4和CdSO4与硫代乙酰胺混合的水溶液进行均相水解,制备了用于光催化制氢的TiO2 / ZnS / CdS复合材料。在沉积在TiO2 / ZnS / CdS复合材料上的钯和铂纳米粒子的存在下观察到氢气的释放。通过扫描电子显微镜获得形态,使用氮吸附-解吸测定表面积(BET)和孔隙率。采用紫外-可见漫反射光谱法估算了制备的TiO2 / ZnS / CdS纳米复合材料的带隙能。制备的样品的光催化活性通过在365 nm波长的紫外线和高达400 nm波长的可见光下,在水性浆料中对橙色II染料进行光催化分解来评估。 CdS掺杂二氧化钛增加了带隙能量,ZnS掺杂增加了光催化活性。对于H2析出的最佳光催化活性表明,在沉积有钯的表面上命名为TiZnCd7的样品,其含有20.21%的TiO2、78.5%的ZnS和1.29%的CdS。

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