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Effect of hydrogen coverage on hydrogenation of o-cresol on Pt(1 1 1)

机译:氢覆盖对邻甲酚在Pt(1 1 1)上加氢的影响

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The conversion of phenolics over metal catalysts is an important process for upgrading biofuels. With density functional calculations, hydrogenation of o-cresol on the hydrogen-covered Pt(111) surface was investigated. The results show that the coverage of hydrogen plays a significant role in the reaction rate while it does not affect the reaction selectivity. The reaction barriers of the hydrogenation process leading to the formation of both 2-methyl-cyclohexanone (the intermediate product) and 2-methylcyclohexanol (the final product) at high H coverages (similar to 1 ML) are found to be smaller by 0.14-0.69 eV than those at lower H coverages (similar to 1/25 ML). After both hydrogen and cresol are adsorbed on Pt(111) from their initial gas phase state, the reaction energy of each hydrogenation step on the surface is also dependent on the hydrogen coverage. On the H-covered Pt(111) surface, most steps of hydrogenation involve exothermic reactions when the hydrogen coverage is high while they are endothermic reactions at low hydrogen coverages. The differences in reaction rate and reaction energy between high and low H coverages can be understood with the coverage-dependent bonding strength and configurations. (C) 2018 Elsevier B.V. All rights reserved.
机译:金属催化剂上酚类的转化是提质生物燃料的重要过程。通过密度泛函计算,研究了氢覆盖的Pt(111)表面上邻甲酚的氢化。结果表明,氢的覆盖率在反应速率中起着重要的作用,而并不影响反应的选择性。发现在高H覆盖率(类似于1 ML)下导致形成2-甲基-环己酮(中间产物)和2-甲基环己醇(最终产物)的氢化过程的反应障碍要小0.14-比在较低H覆盖范围(类似于1/25 ML)下的值高0.69 eV。在氢和甲酚都从其初始气相状态吸附到Pt(111)之后,表面上每个氢化步骤的反应能量也取决于氢的覆盖率。在氢覆盖的Pt(111)表面上,大多数氢化步骤都涉及氢覆盖率高时的放热反应,而它们是氢覆盖率低时的吸热反应。高和低H覆盖率之间反应速率和反应能量的差异可以通过覆盖率相关的键合强度和构型来理解。 (C)2018 Elsevier B.V.保留所有权利。

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