Groot I M N, Ueta H, van der Niet M J T C, Kleyn A W, Juurlink L B F
Leiden Institute of Chemistry, Leiden University, P.O. Box 9502, 2300 RA Leiden, The Netherlands.
J Chem Phys. 2007 Dec 28;127(24):244701. doi: 10.1063/1.2813413.
We examined reactivity of H(2) on Ru(0001) using molecular beam techniques and we compared our results to experimental results for similar systems. The dissociative adsorption of H(2) on Ru(0001) is similar to that on Pt(111) and Ni(111), although on ruthenium nonactivated adsorption is strongly suggested. However, we find no clear signature of a steering- or precursor-based mechanism that favors nonactivated reaction paths at low kinetic energy. In comparison to Pd(111) and Rh(111) our results indicate that a universal mechanism enhancing reactivity at low energy does not have a mass dependence. In addition, we have compared our results to predictions of reactivity for H(2) on Ru(0001) from six-dimensional dynamical calculations using two different generalized gradient approximation functionals. It leads us to conclude that the PW91 functional yields a more accurate value for the minimum energy path but does not impose enough corrugation in the potential. The revised-Perdew-Burke-Ernzerhof (RPBE) functional appears to behave slightly better at higher energies, but we find significant quantitative disagreement. We show that the difference is not due to different energy resolutions between experiment and theory. However, it may be due to a dependence of the reactivity on rotational state or on omission of relevant dimensions in the theoretical description.
我们使用分子束技术研究了H₂在Ru(0001)上的反应活性,并将我们的结果与类似体系的实验结果进行了比较。H₂在Ru(0001)上的解离吸附与在Pt(111)和Ni(111)上的相似,尽管强烈表明在钌上存在非活化吸附。然而,我们没有发现有利于低动能下非活化反应路径的基于导向或前驱体机制的明确特征。与Pd(111)和Rh(111)相比,我们的结果表明,一种在低能量下增强反应活性的通用机制不存在质量依赖性。此外,我们将我们的结果与使用两种不同广义梯度近似泛函的六维动力学计算对H₂在Ru(0001)上反应活性的预测进行了比较。这使我们得出结论,PW91泛函对最小能量路径给出了更准确的值,但在势中没有施加足够的起伏。修正的佩德韦-伯克-恩泽霍夫(RPBE)泛函在较高能量下表现似乎稍好,但我们发现存在显著的定量差异。我们表明,这种差异不是由于实验和理论之间不同的能量分辨率造成的。然而,它可能是由于反应活性对转动状态的依赖性或理论描述中相关维度的遗漏所致。