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Gold particle size effects in the gas-phase hydrogenation of m-dinitrobenzene over Au/TiO_2

机译:Au / TiO_2上间二硝基苯气相加氢中金的粒径效应

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摘要

The effect of Au particle size, supported on TiO2, on the gas-phase hydrogenation of m-dinitrobenzene has been considered. The catalysts (Au loading = 0.1 and 1 mol%) were prepared by impregnation with HAuCl_4 and a range of Au particle sizes (3.4–10.0 nm) was generated by temperature-programmed reduction over the interval 603 K 6 T 6 1273 K. A thermal treatment of TiO_2 at TP873 K was required for the allotropic change from anatase to rutile but the presence of Au lowered the requisite temperature for complete transformation by up to 400 K. m-Dinitrobenzene hydrogenation exhibited a particle size sensitivity where higher specific rates were obtained with smaller Au particles, irrespective of the support composition (i.e. anatase:rutile ratio). The reaction over each Au/TiO_2 catalyst generated m-phenylenediamine (reduction of both –NO_2 groups) and/or m-nitroaniline (reduction of one –NO_2 group). A parallel/consecutive kinetic model has been applied to quantify the catalytic selectivity where Au particles <5 nm favoured m-nitroaniline production. The dependence of hydrogenation performance on Au particle size is accounted for in terms of a modification to Au electronic character, which impacts on m-dinitrobenzene adsorption/activation.
机译:已经考虑了负载在TiO2上的Au粒径对间二硝基苯气相加氢的影响。通过用HAuCl_4浸渍制备催化剂(Au含量= 0.1和1 mol%),并通过在603 K 6 T 6 1273 K范围内进行程序升温还原生成一定范围的Au粒径(3.4-10.0 nm)。从锐钛矿到金红石的同素异形变化需要在TP873 K处进行TiO_2热处理,但是Au的存在使完全转化所需的温度降低了400K。间二硝基苯加氢显示出较高的比重,具有粒径敏感性。与较小的Au颗粒无关,而与载体组成无关(即锐钛矿:金红石比)。在每种Au / TiO_2催化剂上反应生成间苯二胺(还原–NO_2基团)和/或间硝基苯胺(还原一个–NO_2基团)。平行/连续动力学模型已用于量化催化选择性,其中小于5 nm的Au颗粒有利于间硝基苯胺的生产。氢化性能对Au粒径的依赖性是通过对Au电子特性的改性来解释的,这会影响间二硝基苯的吸附/活化。

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