首页> 外文期刊>The Journal of Chemical Physics >Theoretical study of the reactions of Ar++HX(v=0) and Ar+HX+(v) (X=H and D) at E=0.1 eV using the trajectory surface hopping method
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Theoretical study of the reactions of Ar++HX(v=0) and Ar+HX+(v) (X=H and D) at E=0.1 eV using the trajectory surface hopping method

机译:使用轨迹表面跳变法对E ++ 0.1 eV下Ar ++ HX(v = 0)和Ar + HX +(v)(X = H和D)的反应进行理论研究

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Trajectory surface hopping calculations have been carried out for collisions of Ar++H-2 (v=0), Ar++HD (v=0), H-2(+)(v)+Ar, and HD+(v)+Ar, where v=0, 1, and 2 on the Kuntz-Roach diatomics-in-molecules potential surfaces at a relative energy of 0.1 eV. The importance of the mutual "capture" of the two particles on the attractive ground potential energy surface is shown clearly. The fact that capture does not occur on every collision is attributed to an effect of the vibrational phase of the H-2 or HD molecule. This vibrational phase effect can explain the drop in the experimental rate constant seen at very low temperatures in the Ar++H-2 system. For H-2(+)(v=2)+Ar and HD+(v=2)+Ar we also find that many trajectories hop to the first excited potential surface as the particles approach. Since these trajectories cannot reach small separations, this further reduces the reactive cross section for v=2 and higher levels. The ground potential energy surface has a fairly deep well, particularly when the Ar-H-H angle is near 90degrees. Hence, once capture occurs in the (Ar-H-D)(+) system, the Ar-H and Ar-D distances rapidly interchange. The product ArD+ is always favored over ArH+ because the H atom can more easily escape the complex. Finally, the reactivity of Ar++H-2 (v=0) is seen to be intermediate between that of H-2(+) (v=1) and H-2(+) (v=2) with Ar. (C) 2002 American Institute of Physics. [References: 70]
机译:已针对Ar ++ H-2(v = 0),Ar ++ HD(v = 0),H-2(+)(v)+ Ar和HD +(v)的碰撞进行了轨迹表面跳变计算+ Ar,其中Kuntz-Roach分子双原子分子势能面上的v = 0、1和2的相对能量为0.1 eV。清楚地显示了两个粒子在吸引的地面势能表面上相互“捕获”的重要性。捕获不会在每次碰撞中发生的事实归因于H-2或HD分子的振动相位的影响。这种振动相位效应可以解释Ar ++ H-2系统在非常低的温度下观察到的实验速率常数的下降。对于H-2(+)(v = 2)+ Ar和HD +(v = 2)+ Ar,我们还发现当粒子接近时,许多轨迹会跳到第一个受激势能面。由于这些轨迹无法达到较小的间距,因此对于v = 2和更高的水平,这进一步减小了反应截面。地面势能表面具有相当深的阱,特别是当Ar-H-H角接近90度时。因此,一旦在(Ar-H-D)(+)系统中发生捕获,Ar-H和Ar-D的距离就会迅速交换。始终比ArH +更喜欢ArD +产物,因为H原子可以更容易地逃脱配合物。最后,可以看到Ar ++ H-2(v = 0)的反应性介于H-2(+)(v = 1)和H-2(+)(v = 2)与Ar的反应性之间。 (C)2002美国物理研究所。 [参考:70]

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