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High performance of carbon nanotubes confining gold nanoparticles for selective hydrogenation of 1,3-butadiene and cinnamaldehyde

机译:限制金纳米颗粒用于1,3-丁二烯和肉桂醛选择性加氢的高性能碳纳米管

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摘要

This work reports a striking enhancement of catalytic performance of gold nanoparticles (NPs) with average diameter of 3.2 nm partially (ca. 32-40%) confined in the cavity of carbon nanotubes (CNTs) for the gas-phase hydrogenation of 1,3-butadiene (BD), as well as liquid-phase hydrogenation of cinnamaldehyde (CAL). The reaction rates and turnover frequencies of the CNTs confining gold NPs exceed those with a similar size deposited on the outer surface of CNTs and activated carbon by more than one to two orders of magnitude in both two reactions. The selectivity to monobutenes and hydrocinnamaldehyde is up to 100% and 91% at 100% and 95% conversions of BD and CAL, respectively. Au/CNTs catalysts were characterized in depth to establish their structure-property relationship. The peculiar interaction of confined gold NPs with the surface of CNTs facilitates the dissociation/activation of H _2, which is the rate-determining step for hydrogenation reactions demonstrated by kinetic studies.
机译:这项工作报告惊人地提高了平均直径为3.2 nm的金纳米颗粒(NPs)的催化性能,该纳米颗粒部分(约32-40%)限制在碳纳米管(CNTs)的空腔中进行1,3的气相加氢-丁二烯(BD)以及肉桂醛的液相加氢(CAL)。在两个反应中,限制金NP的CNT的反应速率和周转频率比沉积在CNT和活性炭外表面上的相似尺寸的反应速率和周转频率高出一到两个数量级。在BD和CAL的100%和95%转化率下,对单丁烯和肉桂醛的选择性分别高达100%和91%。对Au / CNTs催化剂进行了深入表征,以建立其结构与性质的关系。受限的金纳米粒子与碳纳米管表面的特殊相互作用促进了H _2的解离/活化,这是动力学研究证明的加氢反应的速率决定步骤。

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