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转动能对反应Li + HF(υ = 0,j)→LiF + H的影响:一项实验与计算研究

Effect of rotational energy on the reaction Li + HF(upsilon = 0,j)-->LiF + H: an experimental and computational study.

作者信息

Bobbenkamp Rolf, Paladini Alessandra, Russo Andrea, Loesch H J, Menéndez Marta, Verdasco Enrique, Aoiz F J, Werner H-J

机构信息

Fakultät für Physik, Universität Bielefeld, Germany.

出版信息

J Chem Phys. 2005 Jun 22;122(24):244304. doi: 10.1063/1.1942496.

Abstract

In a crossed molecular-beam study we have measured angular and time-of-flight distributions of the product LiF from the reaction Li + HF(upsilon = 0)-->LiF + H at various collision energies ranging from 97 to 363 meV for three markedly different rotational state distributions of HF obtained at nozzle temperatures close to 315, 510, and 850 K. Particularly, for the low and intermediate collision energies we observe significant effects of the varying j-state populations on the shape of the product angular distributions. At 315 K an additional feature appears in the angular distributions which is interpreted as being due to scattering from HF dimers. The experimental data are compared with simulations of the monomer reaction based on extensive quasiclassical trajectory calculations on a new state-of-the-art ab initio potential energy surface. We find an overall good agreement between the theoretical simulations and the experimental data for the title reaction, especially at the highest HF nozzle temperature.

摘要

在一项交叉分子束研究中,我们测量了反应Li + HF(υ = 0)→LiF + H产生的产物LiF在不同碰撞能量下的角分布和飞行时间分布,碰撞能量范围为97至363毫电子伏特,其中HF的三种明显不同的转动状态分布是在接近315、510和850 K的喷嘴温度下获得的。特别地,对于低碰撞能量和中等碰撞能量,我们观察到不同j态布居对产物角分布形状有显著影响。在315 K时,角分布中出现了一个额外特征,这被解释为是由于HF二聚体的散射所致。实验数据与基于在新的先进从头算势能面上进行的广泛准经典轨迹计算的单体反应模拟结果进行了比较。我们发现对于该标题反应,理论模拟与实验数据总体上吻合良好,尤其是在最高的HF喷嘴温度下。

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