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Accurate ab initio potential energy surfaces for the (3)A '' and (3)A ' electronic states of the O(P-3) plus HBr system

机译:O(P-3)+ HBr系统的(3)A''和(3)A'电子态的准确的从头算势能面

摘要

In this work, we report the construction of potential energy surfaces for the (3)A '' and (3)A' states of the system O(P-3) + HBr. These surfaces are based on extensive ab initio calculations employing the MRCI+Q/CBS+SO level of theory. The complete basis set energies were estimated from extrapolation of MRCI+Q/aug-cc-VnZ(-PP) (n = Q, 5) results and corrections due to spin-orbit effects obtained at the CASSCF/aug-cc-pVTZ(-PP) level of theory. These energies, calculated over a region of the configuration space relevant to the study of the reaction O(P-3) + HBr - OH + Br, were used to generate functions based on the many-body expansion. The three-body potentials were interpolated using the reproducing kernel Hilbert space method. The resulting surface for the (3)A '' electronic state contains van der Waals minima on the entrance and exit channels and a transition state 6.55 kcal/mol higher than the reactants. This barrier height was then scaled to reproduce the value of 5.01 kcal/mol, which was estimated from coupled cluster benchmark calculations performed to include high-order and core-valence correlation, as well as scalar relativistic effects. The (3)A' surface was also scaled, based on the fact that in the collinear saddle point geometry these two electronic states are degenerate. The vibrationally adiabatic barrier heights are 3.44 kcal/mol for the (3)A '' and 4.16 kcal/mol for the (3)A' state. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.4705428]
机译:在这项工作中,我们报告了系统O(P-3)+ HBr的(3)A''和(3)A'态势能面的构造。这些表面基于采用MRCI + Q / CBS + SO理论水平的大量从头计算。根据MRCI + Q / aug-cc-VnZ(-PP)(n = Q,5)结果的外推法以及由于CASSCF / aug-cc-pVTZ(自旋轨道效应)引起的校正,估算了完整的基集能量。 -PP)理论水平。这些能量是在与研究O(P-3)+ HBr-> OH + Br有关的结构空间的整个区域上计算得出的,用于基于多体膨胀生成函数。使用重现内核希尔伯特空间方法对三体电位进行插值。 (3)A''电子态的所得表面在入口和出口通道上均具有范德华极小值,其过渡态比反应物高6.55 kcal / mol。然后按比例缩放该势垒高度,以重现5.01 kcal / mol的值,该值是根据耦合簇基准计算得出的,包括高阶和核心价相关性以及标量相对论效应。 (3)A'表面也按比例缩放,这是基于在共线鞍点几何形状中这两个电子状态退化的事实。 (3)A''的绝热绝热势垒高度为3.44 kcal / mol,(3)A'态的绝热势垒高度为4.16 kcal / mol。 (C)2012美国物理研究所。 [http://dx.doi.org/10.1063/1.4705428]

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