首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Carbon nanotubes/titanium dioxide (CNTs/TiO2) nanocomposites prepared by conventional and novel surfactant wrapping sol-gel methods exhibiting enhanced photocatalytic activity
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Carbon nanotubes/titanium dioxide (CNTs/TiO2) nanocomposites prepared by conventional and novel surfactant wrapping sol-gel methods exhibiting enhanced photocatalytic activity

机译:通过常规和新型表面活性剂包裹溶胶-凝胶法制备的碳纳米管/二氧化钛(CNTs / TiO2)纳米复合材料表现出增强的光催化活性

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In this work, a conventional sol-gel method was used to prepare CNTs/TiO2 nanocomposites with different carbon loading in the range up to 20% CNTs/TiO2 by weight. The bare CNTs (multi-walled), and the composites were characterized by a range of analytical techniques including TEM, XRD, BET and TGA-DSC. The results show the successful covering of the CNTs with discrete clusters of TiO2 and bare CNTs surfaces which after annealing at 500 °C led to mesoporous crystalline TiO2 (anatase) clusters. The photocatalytic activities of the nanocomposites were monitored from the results of the photodegrada-tion of methylene blue (MB). The optimum CNTs/TiO2 ratio in the composites prepared by conventional sol-gel method was found to be in the range from 1.5% to 5% by weight under the experimental conditions investigated. The maximum increase in activity was found to be 12.8% compared to the pure TiO2 sample.In contrast, the synthesis of CNTs/TiO2 nanocomposites by a novel surfactant wrapping sol-gel method [B. Gao, C. Peng, G.Z. Chen, G. Li Puma, Appl. Catal. B: Environ. 85 (2008) 17.] led to a uniform and well-defined nanometer-scale titania layer on individual CNTs. The nanocomposites were found to enhance the initial oxidation rate of methylene blue by onefold compared to the pure TiO2 sample. This larger degree of rate enhancement is attributed to the supporting role of the CNTs and surface properties prepared by this novel modified sol-gel method.
机译:在这项工作中,使用常规的溶胶-凝胶法制备了具有不同碳载量的碳纳米管/ TiO2纳米复合材料,碳纳米管的最高载重量为20%。裸露的CNT(多壁)和复合材料通过包括TEM,XRD,BET和TGA-DSC在内的多种分析技术进行了表征。结果表明,用离散的TiO2簇和裸露的CNT表面成功覆盖了CNT,这在500°C退火后导致了中孔晶体TiO2(锐钛矿)簇。从亚甲基蓝(MB)的光降解结果监测了纳米复合材料的光催化活性。在所研究的实验条件下,发现通过常规溶胶-凝胶法制备的复合材料中的最佳CNTs / TiO 2比在1.5重量%至5重量%的范围内。与纯TiO2样品相比,发现最大的活性增加为12.8%。相反,通过新型表面活性剂包裹溶胶-凝胶法合成CNTs / TiO2纳米复合材料[B。高昌鹏Chen,G.Li Puma,Appl。卡塔尔。 B:环境。参见,例如,J.Am.Chem.Soc.85(2008)17。]导致了在单个CNT上的均匀且定义明确的纳米级二氧化钛层。与纯TiO2样品相比,发现纳米复合材料可将亚甲基蓝的初始氧化速率提高一倍。这种更大程度的速率提高归因于碳纳米管的支撑作用和通过这种新颖的改良溶胶-凝胶法制备的表面性能。

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