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首页> 外文期刊>The Journal of Chemical Physics >Ab initio relativistic potential energy surfaces of benzene-Xe complex with application to intermolecular vibrations
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Ab initio relativistic potential energy surfaces of benzene-Xe complex with application to intermolecular vibrations

机译:AB初始相同的苯XE复合体的相对论势能表面与分子间振动的应用

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The benzene-Xe (BXe) complex in its electronic ground state is studied using ab initio methods. Since this complex contains the heavy Xe atom, the relativistic effects cannot be neglected. We test two different approaches that describe the scalar relativistic effects in the framework of the coupled-cluster level of theory with single, double, and perturbative triple excitations, used for the interaction energy calculations. The first one is based on the small core pseudopotential (PP), and the second one is based on the explicit treatment of scalar relativistic effects using the Douglas-Kroll-Hess (DKH) Hamiltonian. A few basis sets are tested with the PP and DKH, and for each one, the analytical potential energy surface (PES) is constructed. It is shown that the difference between PESs determined with PP and DKH methods is small, if the orbitals of the 4d subshell in Xe are correlated. We select the most appropriate approach for the calculation of the potential energy surface of BXe, with respect to accuracy and computational cost. The optimal level of theory includes a small Dunning's basis set for the benzene monomer and a larger PP basis set for Xe supplemented by midbond functions. The PES obtained using such an approach provides a reasonable accuracy when compared to the empirical one derived from the microwave spectra of BXe. The empirical and the theoretical values of intermolecular vibrational energies agree within 0.5 cm(-1) up to second overtones. The vibrational energy level pattern of BXe is characterized by a distinct polyad structure.
机译:使用AB Initio方法研究其电子地面状态的苯-XE(BXE)复合物。由于这种复合物包含重Xe原子,因此不容忽视相对论的效果。我们测试了两种不同的方法,该方法描述了具有用于交互能量计算的单个,双和扰动三重激发的耦合集群级别的耦合簇水平框架中的标量相对论效应。第一个基于小核心伪势(PP),第二个是使用Douglas-Kroll-Hess(DKH)Hamiltonian的标量相对论效应的显式治疗。使用PP和DKH测试几个基集,并且每个基础设置,构造分析势能表面(PE)。结果表明,如果XE中的4D子壳的轨道相关,则用PP和DKH方法确定的PES与DKH方法之间的差异很小。我们选择最合适的方法来计算BXE的潜在能量表面,相对于精度和计算成本。最佳理论水平包括用于苯单体的小休息基础,并为由中息函数补充的Xe较大的PP基础设置。与衍生自BXE的微波光谱的经验性相比,使用这种方法获得的PE提供了合理的精度。分子间振动能的经验和理论值在0.5cm(-1)内达到第二次溢出。 BXE的振动能量水平模式的特征在于不同的Polyad结构。

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