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首页> 外文期刊>ACS catalysis >Enhanced Interfacial H-2 Activation for Nitrostyrene Catalytic Hydrogenation over Rutile Titania-Supported Gold by Coadsorption: A First-Principles Microkinetic Simulation Study
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Enhanced Interfacial H-2 Activation for Nitrostyrene Catalytic Hydrogenation over Rutile Titania-Supported Gold by Coadsorption: A First-Principles Microkinetic Simulation Study

机译:增强型界面H-2对硝基丁烯催化氢化通过共吸附的金红石催化氢化的活化:第一原理微因仿真研究

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摘要

Hydrogenation of aromatic nitro compounds is an efficient way to yield aniline, an extremely vital intermediate in many chemical industry fields. However, it is still a great challenge to prepare a catalyst with both high activity and selectivity for this important process when other reducible groups exist at nitroaromatics. Au/TiO2 catalysts could achieve good selectivity for the hydrogenation of nitroarenes with a reducible functional group. However, their activity is still not high. Their fundamental and systematic understandings are still lacking. In this work, the catalytic kinetics of the 4-nitrostyrene (4-NS) hydrogenation system at the binary Au/TiO2 interface is investigated by first-principles heterogeneous site microkinetics simulation. To solve the complex microkinetics model with heterogeneous multiple sites, an efficient hybrid iteration numerical method is proposed and utilized to overcome the stiff problem. Through realistic first-principles calculations and microkinetic analysis, the favorable adsorption configurations and possible catalytic mechanism are determined for 4-NS hydrogenation at the Au/TiO2 interface. It is found that the chemisorption of 4-nitrostyrene could significantly lower the energy barrier of H-2 dissociation at the interface, which could enhance the overall activity of the Au/TiO2 catalyst. It sheds light on a way to promote the activity of selective hydrogenation for metal oxide-supported gold catalysts through modulating the coordination of exposed surface cations.
机译:芳香硝基化合物的氢化是一种有效的苯胺,其许多化学工业领域的极其重要的中间体。然而,当在硝基甲甲甲甲基甲族的其他可还原基团存在时,制备具有高活性和选择性的催化剂仍然是一个很大的挑战。 Au / TiO2催化剂可以实现良好的选择性硝基酮与可还原官能团的氢化。但是,他们的活动仍然不高。他们的基本和系统的理解仍然缺乏。在这项工作中,通过第一原理的异质位点微动因药模拟研究了二元Au / TiO2界面处的4-硝基rene(4-ns)氢化系统的催化动力学。为了解决具有异质多个网站的复杂的微动态模型,提出了一种有效的混合迭代数值方法,并利用来克服僵硬的问题。通过现实的第一原理计算和微酮分析,在Au / TiO2界面处测定有利的吸附配置和可能的催化机理。发现4-硝基丁烯的化学吸收可以显着降低界面处的H-2离解的能量屏障,这可以增强Au / TiO2催化剂的整体活性。它通过调节暴露表面阳离子的配位促进促进金属氧化物负载金催化剂的选择性氢化活性的方式。

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