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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Selective photocatalytic oxidation of benzene to phenol using carbon nanotube (CNT)-supported Cu and TiO2 heterogeneous catalysts
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Selective photocatalytic oxidation of benzene to phenol using carbon nanotube (CNT)-supported Cu and TiO2 heterogeneous catalysts

机译:使用碳纳米管(CNT)-Supported Cu和TiO2非均相催化剂选择性光催化苯对苯酚氧化苯酚

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摘要

Nanostructured composite photocatalysts, comprising multi-walled carbon nanotubes (CNT), the anatase phase of titanium dioxide, and copper oxide, were prepared by sol-gel methodology. The synthesized materials were consequently characterised by various techniques. Nanocomposite heterogeneous catalysts, combining Cu and TiO2 with CNT, were utilized for the direct photocatalytic oxidation of benzene to phenol. A correlation between the presence of nano-metal and the variations in absorption was observed, especially in the UV-vis spectral range. This behaviour was explained by a strong interphase interaction among Cu, TiO2 and CNT. Benzene conversion and turnover was due to an improved adsorption. The selectivity towards phenol production was enhanced by supporting TiO2 with CNT and by impregnating copper, thereby suppressing the mineralisation of benzene and favouring the evolution of phenolic compounds. The synergy between TiO2 and CNT was also observed through a high rate and kinetics of benzene oxidation. The sequential interactions of the hydroxyl radicals (formed from water) with the ad-sorbed state of benzene on copper or titania surfaces led to an intensified catalysis, and in turn, phenol or hydroquinone product formation. A combination of high activity and stability made the prepared hierarchical catalysts potentially interesting for the photocatalysis applications in selective phenol synthesis. (C) 2017 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:通过溶胶 - 凝胶方法制备包含多壁碳纳米管(CNT),二氧化钛的锐钛矿相和氧化铜的纳米结构复合光催化剂。因此,合成材料的特征在于各种技术。将Cu和TiO 2与CNT组合的纳米复合异质催化剂用于将苯的直接光催化氧化与苯酚。观察到纳米金属的存在与吸收中的变化之间的相关性,特别是在UV-Vis光谱范围内。这种行为是通过Cu,TiO2和CNT之间的强不同相互作用来解释的。苯转换和营业额是由于改善的吸附。通过用CNT支撑TiO 2并通过浸渍铜来增强对苯酚产生的选择性,从而抑制苯的矿化并有利于酚类化合物的演变。还通过高速率和苯氧化动力学观察到TiO2和CNT之间的协同作用。羟基自由基(由水形成)的顺序相互作用与铜或二氧化钛表面上的苯的吸附状态导致强化催化,又反过来,苯酚或氢醌产品形成。高活性和稳定性的组合使制备的等级催化剂对选择性酚合成中的光催化应用可能有趣。 (c)2017台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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