Cuppen H M, Hornekaer L
Leiden Observatory, Leiden University, P.O. Box 9513, 2300 RA Leiden, The Netherlands.
J Chem Phys. 2008 May 7;128(17):174707. doi: 10.1063/1.2913238.
We present Monte Carlo simulations on Eley-Rideal abstraction reactions of atomic hydrogen chemisorbed on graphite. The results are obtained via a hybrid approach where energy barriers derived from density functional theory calculations are used as input to Monte Carlo simulations. By comparing with experimental data, we discriminate between contributions from different Eley-Rideal mechanisms. A combination of two different mechanisms yields good quantitative and qualitative agreement between the experimentally derived and the simulated Eley-Rideal abstraction cross sections and surface configurations. These two mechanisms include a direct Eley-Rideal reaction with fast diffusing H atoms and a dimer mediated Eley-Rideal mechanism with increased cross section at low coverage. Such a dimer mediated Eley-Rideal mechanism has not previously been proposed and serves as an alternative explanation to the steering behavior often given as the cause of the coverage dependence observed in Eley-Rideal reaction cross sections.
我们展示了关于化学吸附在石墨上的氢原子的埃利-里德耳提取反应的蒙特卡罗模拟。结果是通过一种混合方法获得的,其中将密度泛函理论计算得出的能垒用作蒙特卡罗模拟的输入。通过与实验数据比较,我们区分了不同埃利-里德耳机制的贡献。两种不同机制的组合在实验得出的和模拟的埃利-里德耳提取截面及表面构型之间产生了良好的定量和定性一致性。这两种机制包括与快速扩散的H原子的直接埃利-里德耳反应以及在低覆盖率下具有增大截面的二聚体介导的埃利-里德耳机制。这种二聚体介导的埃利-里德耳机制以前未曾被提出过,它为通常被认为是埃利-里德耳反应截面中观察到的覆盖率依赖性原因的转向行为提供了一种替代解释。