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Selective gas phase hydrogenation of nitroarenes over Mo2C-supported Au-Pd

机译:选择性nitroarenes气相加氢在Mo2C-supported Au-Pd

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摘要

We report the first synthesis of Mo2C-supported Au and Au-Pd catalysts (nominal Au/Pd = 10 and 30) obtained from colloidal nanoparticles stabilised by polyvinyl alcohol (PVA). Equivalent Au/Al2O3 and Au-Pd/Al2O3 were prepared and served as benchmarks. Residual PVA was removed by thermal treatment in N-2, which was monitored by thermogravimetric analysis. The catalysts were characterised in terms of temperature-programmed reduction (TPR), BET surface area, H-2 chemisorption, powder X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and transmission electron microscopy (TEM) measurements. The reduced catalysts exhibited an equivalent metal particle size range (1-8 nm) andmean size (4-5 nm). The carbide samples showed greater H-2 chemisorption capacity than the Al2O3 systems where inclusion of Pd enhanced H-2 uptake. XPS measurements suggest electron transfer from Al2O3 to Au while the Au binding energy for the carbide samples is close to that of the metallic Au reference. The catalysts were tested in the gas phase hydrogenation of nitrobenzene, p-chloronitrobenzene and p-nitrobenzonitrile and delivered 100% selectivity to the target amine in each case. Inclusion of Pd served to increase selective hydrogenation rates where Au-Pd/Mo2C outperformed Au-Pd/Al2O3, a response that is attributed to increased surface hydrogen.
机译:我们报告的第一个合成Mo2C-supported盟和Au-Pd催化剂(名义Au / Pd = 10和30)从胶体纳米粒子稳定下来通过聚乙烯醇(PVA)。和Au-Pd /氧化铝是准备和担任基准。治疗2,监控热重分析。描述程序升温减少(TPR)打赌表面积,2化学吸收作用、粉末x射线衍射(XRD),x射线光电子能谱(XPS)和透射电子显微镜(TEM)测量。相当于金属粒径范围(1 - 8海里)andmean大小(4 - 5海里)。大2比氧化铝化学吸收作用能力系统包含Pd增强2吸收。从氧化铝转移到非盟盟绑定能源的硬质合金样品接近金属非盟的参考。检测的气相加氢硝基苯、p-chloronitrobenzene和p-nitrobenzonitrile和交付100%到目标选择性胺在每种情况下。Pd的选择性增加加氢率Au-Pd / Mo2C表现Au-Pd /氧化铝,归因于一个响应增加表面氢。

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