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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Ab initio ground PES and QCT study of the influence of molecular alignment and vibrational excitation on the K+HF -> KF+Hreaction
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Ab initio ground PES and QCT study of the influence of molecular alignment and vibrational excitation on the K+HF -> KF+Hreaction

机译:从头开始进行PES和QCT研究分子排列和振动激发对K + HF-> KF + H反应的影响

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A study of the ground potential energy surface ((2)A' PES) of the title reaction was performed for the first time at the ab initio level, employing several methods and a quite large basis set. No energy barrier above the products, a shallow vdW minimum located at the entrance channel and a pronounced isotropic behavior were found for the (2)A' PES. About 1500 and 2500 ab initio points computed using the "frozen-core" fourth-order method were used to derive two different analytical versions of the (2)A' PES: PES1 and PES2. Moller-Plesset Both analytical PESs and a previous one developed in our group were employed to study the dynamics of the reaction by means of the quasiclassical trajectory method (QCT). The experimental measured effect on the reactivity of the alignment between the initial HF rotational angular momentum (J) and the reactants translational relative velocity (V) was only properly described by PES2. The experimental excitation function of the reaction for an initial HF rovibrational temperature of 500 K was matched using both PES1 and PES2, in contrast to what happened at 2000 K. The pronounced enhancement of the reactivity experimentally observed when going from 500 to 2000 K was only reproduced at low collision energies. It is very difficult to understand the origin of this discrepancy as at the high energy conditions explored quantum effects should not play a relevant role. [References: 43]
机译:使用多种方法和相当大的基础集,首次从头开始对标题反应的地势能表面((2)A'PES)进行了研究。对于(2)A'PES,未发现产品上方有能垒,在入口通道处的浅vdW最小值和明显的各向同性行为。使用“冻结核心”四阶方法计算的大约1500和2500 ab起始点被用于导出(2)A'PES的两个不同分析版本:PES1和PES2。 Moller-Plesset分析性PES和我们小组中的前一个都被用来通过准经典轨迹法(QCT)研究反应的动力学。实验测量对初始HF旋转角动量(J)和反应物平移相对速度(V)之间的对准反应性的影响仅由PES2正确描述。与2000 K时的情况相反,使用PES1和PES2可以使初始HF振动温度为500 K时反应的实验激发函数相匹配。从500 K到2000 K时,实验观察到的反应性显着增强在低碰撞能量下复制。很难理解这种差异的根源,因为在高能量条件下,探索的量子效应不应发挥相关作用。 [参考:43]

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