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TiO 2 nanoparticles immobilized on carbon nanotubes for enhanced visible-light photo-induced activity

机译:固定在碳纳米管上的TiO 2 纳米粒子具有增强的可见光光诱导活性

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CNT–TiO2nanocomposites were prepared through (i) simple mixing of as prepared CNTs and TiO2nanoparticles (NPs), (ii) simple mixing of as prepared CNTs and TiO2NPs followed by heat treatment and (iii) simple mixing of as prepared CNTs and TiO2NPs followed by UV illumination. The synthesis of CNTs and TiO2NPs were performed individually by arc discharge in water and sol–gel methods, respectively and characterized by X-ray diffraction (XRD), ultra violet and visible spectroscopy (UV–vis), Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The visible-light photocatalytic performance of CNT–TiO2nanocomposites was successfully demonstrated for the degradation of Rhodamine B (Rh. B) as a model dye at room temperature. It is found that CNT–TiO2nanocomposites extended the light absorption spectrum toward the visible region and considerably improved the photocatalytic efficiency under visible-light irradiation. The visible-light photocatalytic activities of CNT–TiO2nanocomposites in which CNTs are produced by arc discharge in deionized (DI) water at 40, 60 and 80A arc currents and combined through three different protocols are also investigated. It was found that samples prepared at 80A arc current and 5s arc duration followed by UV illumination revealed best photocatalytic activity compared with the same samples prepared under simple mixing and simple mixing followed by heat treatment. The enhancement in the photocatalytic property of CNT–TiO2nanocomposites prepared at 80A arc current followed by UV illumination may be ascribed to the quality of CNTs produced at this current, as was reported before.
机译:CNT-TiO2纳米复合材料的制备方法是:(i)将制成的CNT和TiO2纳米颗粒(NPs)简单混合,(ii)将制成的CNT和TiO2NPs简单混合,然后进行热处理,以及(iii)将制成的CNTs和TiO2NPs进行简单混合,紫外线照明。碳纳米管和TiO2NPs的合成分别通过电弧放电在水和溶胶-凝胶法中分别进行,并通过X射线衍射(XRD),紫外和可见光谱(UV-vis),傅里叶变换红外光谱(FT- IR),扫描电子显微镜(SEM)和透射电子显微镜(TEM)。 CNT-TiO2纳米复合材料的可见光光催化性能已成功证明可在室温下降解罗丹明B(Rh。B)作为模型染料。发现CNT-TiO2纳米复合材料将光吸收光谱扩展到可见光区域,并显着提高了可见光照射下的光催化效率。还研究了CNT–TiO2纳米复合材料的可见光光催化活性,其中CNT是在去离子(DI)水中以40、60和80A电弧电流通过电弧放电产生的,并通过三种不同的协议进行了组合。发现与在简单混合和简单混合然后热处理的情况下制备的相同样品相比,在80A电弧电流和5s电弧持续时间下接着UV照射制备的样品显示出最佳的光催化活性。如先前报道,在80A电弧电流下制备的CNT-TiO2纳米复合材料的光催化性能增强,然后进行紫外线照射,可能归因于在此电流下生产的CNT的质量。

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