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Transition state theory: a reaction dynamics tool applied to gas-surface reactions

机译:过渡态理论:应用于气体表面反应的反应动力学工具

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摘要

Recombinative desorption of molecules from a metal surface is a fundamental step in heterogeneous catalytic reactions. Understanding this elementary mechanism can bring precious information on both the dynamics and the kinetics of gas-surface reactions. The aim of this work was to combine classical trajectory calculations and transition state theory based approaches to study the dynamics of molecular associative desorption. We were particularly interested in the description of state distributions in the products of associative molecular desorption. For late barrier processes such as H2/Pt(111), energy transfers between vibrational, rotational and translational motions of the departing molecule are too weak to alter its state distributions. Accordingly, transition state theory gives a straightforward description of final state distributions. On the opposite, for early barrier processes, such as H2/Cu(111), strong energy transfers occur in the exit channel. Therefore we must apply the so-called "statistico-dynamical approach". This method is partly based upon transition state theory and takes into account energy transfers which occur between rotational and translational motions en route to the gas phase. Therefore, the statistico-dynamical approach gives a description of rotational state distributions of desorbed molecules. For both processes under investigation, statistical methods were found to be in very good agreement with both classical trajectory calculations and experimental results.
机译:分子从金属表面的重组解吸是非均相催化反应中的基本步骤。了解这种基本机理可以带来有关气体表面反应动力学和动力学的宝贵信息。这项工作的目的是结合经典轨迹计算和基于过渡态理论的方法来研究分子缔合解吸的动力学。我们对描述缔合分子解吸产物中的状态分布特别感兴趣。对于诸如H2 / Pt(111)之类的后期阻挡过程,离去分子的振动,旋转和平移运动之间的能量转移太弱而无法改变其状态分布。因此,过渡状态理论给出了最终状态分布的简单描述。相反,对于早期的阻挡过程,例如H2 / Cu(111),在出口通道中会发生强大的能量转移。因此,我们必须采用所谓的“统计动力学方法”。该方法部分基于过渡状态理论,并考虑到了在气相中旋转运动和平移运动之间发生的能量转移。因此,统计动力学方法描述了解吸分子的旋转状态分布。对于正在研究的两个过程,发现统计方法与经典轨迹计算和实验结果都非常吻合。

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