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Nonstatistical effects in the unimolecular dissociation of the acetyl radical

机译:乙酰基单分子解离的非统计作用

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Classical trajectory and statistical variational efficient microcanonical sampling transition state theory calculations were carried out to investigate the dissociation dynamics of the acetyl radical. For this purpose, an analytical potential function was developed based on ab initio and experimental data reported in the literature. This potential function reproduces reasonably well the geometries, frequencies, and energies of the stationary points of the ground state potential energy surface. The dynamics of the reaction was shown to be intrinsically non-Rice-Ramsperger-Kassel-Marcus (RRKM) at high energies and particularly at 65.9 kcal/mol, at which experimental work showed evidence for nonstatistical behavior. On the other hand, initial excitations of normal modes 507 (CCO) bend, 1079 (CC stretch), 1504 (CH_3 umbrella vibration), and 1939 (CO stretch) enhance significantly the rate of reaction; specifically, excitation of the CO stretch gives a rate coefficient an order of magnitude higher than the rate obtained under random initial conditions. These mode specific effects are explained in terms of a restricted intramolecular vibrational redistribution (IVR). Under statistical initial conditions, the classical trajectory calculations showed a normal isotope effect at the two lowest energies studied, and a slight inverse isotope effect at 65.9 kcal/mol, a result that can be explained with the presence of a methyl free-rotor at the transition state. In contrast, upon initial excitation of the CC and CO stretches and CCO bending at 65.9 kcal/mol, the calculations predicted a normal isotope effect, which agrees with the experimental findings.
机译:进行了经典轨迹和统计变化有效的微规范采样过渡态理论计算,以研究乙酰基的解离动力学。为此,基于从头算和文献中报道的实验数据,开发了一种分析势函数。该势函数可以很好地再现基态势能表面的固定点的几何形状,频率和能量。在高能量下,特别是在65.9 kcal / mol时,反应动力学本质上是非大米-拉姆斯伯格-卡塞尔-马库斯(RRKM),在该实验下,实验证明了非统计行为。另一方面,正常模式507(CCO)弯曲,1079(CC拉伸),1504(CH_3雨伞振动)和1939(CO拉伸)的初始激发显着提高了反应速率;具体地,CO拉伸的激发给出的速率系数比在随机初始条件下获得的速率高一个数量级。这些特定于模式的效应是根据受限制的分子内振动再分布(IVR)来解释的。在统计初始条件下,经典轨迹计算显示出在所研究的两个最低能量下具有正常的同位素效应,在65.9 kcal / mol下具有轻微的反同位素效应,这一结果可以用存在于转子上的甲基自由转子来解释。过渡状态。相比之下,在CC和CO拉伸的初始激发以及CCO弯曲为65.9 kcal / mol时,计算预测了正常的同位素效应,这与实验结果相符。

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