论文标题

在不稳定的B5簇与H的反应中,立体特定的内部纠缠漫游机制

Stereo-specific internally entangled roaming mechanism in the reaction of unstable B5 cluster with H

论文作者

Yonehara, Takehiro, Nakajima, Takahito, Kobayashi, Hikaru, Lin, King-Chuen, Kasai, Toshio

论文摘要

通过使用rang-premander的功能,使用直接的dft方法,使用直接的Ab trajectory计算,一种新型的类型,一种称为立体特异性的纠缠,漫游机制与结构不稳定的B5簇与氢原子的反应。在这种机制中,轻度部分,即H漫游远离B5群集,这是由于不稳定B5群集的巨大振幅运动引起的直接耦合,将转换能量转移到群集振动能量的立体特异性能量转移引起。我们通过比较计算证实,当我们冻结B5簇的振动运动时,从漫游轨迹到排斥轨迹发生了明显的变化。由于结构不稳定的B5簇和冷冻B5簇之间发生的变化,这种轨迹的这种急剧变化揭示了运动能量转移的重要性,导致了类似柔软的陆基样氢的吸收,这表现出了当前的立体特异性纠缠漫游机制。轨迹计算表明,目前的新型漫游机制对H原子攻击的方位角非常敏感,尤其是对于B5群集的B-B键的二聚一个,其中从相对动能到群集的振动能量有效地通过漫游轨迹驱动轨迹驱动的结构趋势,从而有效地进行了群集的振动。

A new type of, called stereo-specific entangled, roaming mechanism is presented in the reaction of structurally unstable B5 cluster with the hydrogen atom, by using the direct ab initio trajectory calculation with a practical level of DFT method using the rang-separated functional. In this mechanism, the light moiety, i.e. H roams around far from the B5 cluster caused by a stereo-specific energy transfer of translational energy to the cluster vibrational energy through the direct coupling due to the large amplitude motion of the unstable B5 cluster. We confirmed by the comparative computation that a clear change occur from the roaming trajectory to the repulsive trajectory, when we froze the vibrational motion of the B5 cluster. This drastic change of the trajectory due to the change between the structurally unstable B5 cluster and the frozen B5 cluster revealed the importance of kinematic energy transfer resulted in the soft-landing-like hydrogen absorption which manifested the present stereo-specific entangled roaming mechanism. The trajectory calculation revealed that the present new type of roaming mechanism is very sensitive to the azimuthal angle of the H atom attack, especially to the bisection of the B-B bond of the B5 cluster, where the energy flow from relative kinetic energy to the vibrational energy of the cluster efficiently takes place through the roaming trajectory driven due to the structural fluctuation of the B5 cluster.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源