Department of Chemistry and Chemical Biology, University of New Mexico, Albuquerque, New Mexico 87131, USA.
J Chem Phys. 2013 Jan 28;138(4):044704. doi: 10.1063/1.4776770.
To understand the influence of reactant internal excitation and orientation on the dissociative chemisorption of water on Cu(111), a quasi-seven-dimensional quantum dynamics study has been carried out on a refined potential energy surface (PES). The new PES was modified in the asymptotic region to allow an accurate characterization of the H(2)O ro-vibrational levels. The mode selectivity of the reaction was reexamined on the new PES and found to be consistent with our earlier work. To rationalize the observed mode selectivity, a vibrationally adiabatic reaction path model was determined on this PES. Furthermore, the reactivity for various rotationally excited H(2)O was investigated. It is shown that even low rotational excitation in H(2)O can either enhance or inhibit the reaction and the reactivity depends on the orientation of the impinging molecule.
为了理解反应物内部激发态和取向对水在 Cu(111)上的离解化学吸附的影响,我们在一个精细化的势能表面(PES)上进行了准七维量子动力学研究。新的 PES 在渐近区域进行了修正,以能够准确描述 H(2)O 的转动-振动能级。我们在新的 PES 上重新检验了反应的模式选择性,发现其与我们之前的工作一致。为了合理化观察到的模式选择性,我们在这个 PES 上确定了一个振动绝热反应路径模型。此外,我们还研究了各种转动激发态 H(2)O 的反应性。结果表明,即使 H(2)O 的低转动激发也可以增强或抑制反应,并且反应性取决于撞击分子的取向。