Balucani Nadia, Casavecchia Piergiorgio, Bañares Luis, Aoiz F Javier, Gonzalez-Lezana Tomás, Honvault Pascal, Launay Jean-Michel
Dipartimento di Chimica, Università di Perugia, 06123 Perugia, Italy.
J Phys Chem A. 2006 Jan 19;110(2):817-29. doi: 10.1021/jp054928v.
In this paper, we report a combined experimental and theoretical study on the dynamics of the N(2D) + H2 insertion reaction at a collision energy of 15.9 kJ mol(-1). Product angular and velocity distributions have been obtained in crossed beam experiments and simulated by using the results of quantum mechanical (QM) scattering calculations on the accurate ab initio potential energy surface (PES) of Pederson et al. (J. Chem. Phys. 1999, 110, 9091). Since the QM calculations indicate that there is a significant coupling between the product angular and translational energy distributions, such a coupling has been explicitly included in the simulation of the experimental results. The very good agreement between experiment and QM calculations sustains the accuracy of the NH2 ab initio ground state PES. We also take the opportunity to compare the accurate QM differential cross sections with those obtained by two approximate methods, namely, the widely used quasiclassical trajectory calculations and a rigorous statistical method based on the coupled-channel theory.
在本文中,我们报告了一项关于在碰撞能量为15.9 kJ mol⁻¹ 时N(²D) + H₂插入反应动力学的实验与理论相结合的研究。在交叉束实验中获得了产物角分布和速度分布,并利用Pederson等人(《化学物理杂志》,1999年,第110卷,9091页)精确的从头算势能面(PES)上的量子力学(QM)散射计算结果进行了模拟。由于QM计算表明产物角分布和平动能分布之间存在显著耦合,这种耦合已明确纳入实验结果的模拟中。实验与QM计算之间的良好一致性证实了NH₂从头算基态PES的准确性。我们还借此机会将精确的QM微分截面与通过两种近似方法获得的截面进行比较,这两种方法分别是广泛使用的准经典轨迹计算和基于耦合通道理论的严格统计方法。