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BSSE-corrected geometry and harmonic and anharmonic vibrational frequencies of formamide-water and formamide-formamide dimers

机译:BSSE校正的甲酰胺-水和甲酰胺-甲酰胺二聚体的几何形状以及谐波和非谐振动频率

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The basis set superposition error (BSSE) influence in the geometry structure, interaction energies, and intermolecular harmonic and anharmonic vibrational frequencies of cyclic formamide-formamide and formamide-water dimers have been studied using different basis sets (6-31G, 6-31G**, 6-31++G**, D95V, D95V**, and D95V++**). The a posteriori "counterpoise" (CP) correction scheme has been compared with the a priori "chemical Hamiltonian approach" (CHA) both at the Hartree-Fock (HF) and second-order Moller-Plesset many-body perturbation (MP2) levels of theory. The effect of BSSE on geometrical parameters, interaction energies, and intermolecular harmonic vibrational frequencies are discussed and compared with the existing experimental data. As expected, the BSSE-free CP and CHA interaction energies usually show less deep minima than those obtained from the uncorrected methods at both the ET and MP2 levels. Focusing on the correlated level, the amount of BSSE in the intermolecular interaction energies is much larger than that at the HT level, and this effect is also conserved in the values of the force constants and harmonic vibrational frequencies. All these results clearly indicate the importance of the proper BSSE-free correlation treatment with the well-defined basis functions. At the same time, the results show a good agreement between the a priori CRA and a posteriori CP correction scheme; this agreement is remarkable in the case of large and well-balanced basis sets. The anharmonic frequency correction values also show an important BSSE dependence, especially for hydrogen bond stretching and for low frequencies belonging to the intermolecular normal modes. (C) 2005 Wiley Periodicals, Inc.
机译:使用不同的基集(6-31G,6-31G *)研究了基集叠加误差(BSSE)对环状甲酰胺-甲酰胺和甲酰胺-水二聚体的几何结构,相互作用能以及分子间谐波和非谐振动频率的影响*,6-31 ++ G **,D95V,D95V **和D95V ++ **)。在Hartree-Fock(HF)和二阶Moller-Plesset多体摄动(MP2)级别,已将后验“平衡”(CP)校正方案与先验“化学哈密顿方法”(CHA)进行了比较。理论。讨论了BSSE对几何参数,相互作用能和分子间谐波振动频率的影响,并与现有实验数据进行了比较。不出所料,无BSSE的CP和CHA相互作用能通常比在ET和MP2水平上从未经校正的方法获得的最小值要小。着眼于相关水平,分子间相互作用能中的BSSE量比HT水平大得多,并且这种作用在力常数和谐波振动频率的值中也得以保持。所有这些结果清楚地表明,使用定义明确的基函数进行正确的无BSSE相关处理非常重要。同时,结果表明先验CRA和后验CP校正方案之间有很好的一致性。在大型且均衡的基础集的情况下,此协议非常出色。非谐频率校正值还显示出重要的BSSE依赖性,尤其是对于氢键拉伸和属于分子间法向模式的低频而言。 (C)2005 Wiley期刊公司

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