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首页> 外文期刊>The Journal of Chemical Physics >A simple density functional fractional occupation number procedure to determine the low energy transition region of spin-flip reactions
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A simple density functional fractional occupation number procedure to determine the low energy transition region of spin-flip reactions

机译:确定自旋翻转反应低能跃迁区域的简单密度泛函分数职业数程序

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摘要

A computationally simple three-step procedure to survey the energy landscape and to determine the molecular transition structure and activation energy at the intersection of two weakly coupled electronic potential energy surfaces of different symmetry is suggested.Only commercial software is needed to obtain the transition states of,for instance,spin-flip reactions.The computational expense is only two to three times larger than that of the standard determination of an adiabatic reaction path.First,the structures of the two electronic initial and final states along a chosen reaction coordinate are individually optimized.At the "projected crossing," the two states have the same energy at the same value of the reaction coordinate,but different state-optimized partial structures.Second,the unique optimized structure of a low energy crossing point between the two states is determined with the help of the density functional fractional occupation number approach.Finally,the respective energy of the two states at the crossing is estimated by a single point calculation.The prescription is successfully applied to some simple topical examples from organic and from inorganic chemistry,respectively,concerning the spin-flip reactions 3H3CS+->1H2CSH+ and 7MoCO2->5MoCO2->3OMoCO.
机译:提出了一种计算简单的三步法来测量能量态势,并确定两个对称性不同的弱耦合电子势能面相交处的分子跃迁结构和活化能。仅需商业软件即可获得例如,自旋翻转反应。计算量仅是绝热反应路径标准测定的2到3倍。首先,沿着所选反应坐标的两个电子初始状态和最终状态的结构是独立的在“投影交叉”处,两个状态在相同的反应坐标值下具有相同的能量,但状态优化的部分结构不同。第二,两个状态之间的低能量交叉点的唯一优化结构是借助密度泛函分数职业数法确定。最后,各个能量通过单点计算可以估算出交叉处的两个状态。分别将自旋翻转反应3H3CS +-> 1H2CSH +和7MoCO2-> 5MoCO2-应用于有机和无机化学中的一些简单实例。 > 3OMoCO。

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