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甲醛和硫代甲醛的均相和非均相非共价二聚体:结构、能量学及振动频率

Homogeneous and heterogeneous noncovalent dimers of formaldehyde and thioformaldehyde: structures, energetics, and vibrational frequencies.

作者信息

Van Dornshuld Eric, Holy Christina M, Tschumper Gregory S

机构信息

Department of Chemistry and Biochemistry, University of Mississippi , University, Mississippi 38677, United States.

出版信息

J Phys Chem A. 2014 May 8;118(18):3376-85. doi: 10.1021/jp502588h. Epub 2014 Apr 28.

Abstract

This work provides the first characterization of five stationary points of the homogeneous thioformaldehyde dimer, (CH2S)2, and seven stationary points of the heterogeneous formaldehyde/thioformaldehyde dimer, CH2O/CH2S, with correlated ab initio electronic structure methods. Full geometry optimizations and corresponding harmonic vibrational frequencies were computed with second-order Møller-Plesset perturbation theory (MP2) and 13 different density functionals in conjunction with triple-ζ basis sets augmented with diffuse and multiple sets of polarization functions. The MP2 results indicate that the three stationary points of (CH2S)2 and four of CH2O/CH2S are minima, in contrast to two stationary points of the formaldehyde dimer, (CH2O)2. Single-point energies were also computed using the explicitly correlated MP2-F12 and CCSD(T)-F12 methods and basis sets as large as heavy-aug-cc-pVTZ. The (CH2O)2 and CH2O/CH2S MP2 and MP2-F12 binding energies deviated from the CCSD(T)-F12 binding energies by no more than 0.2 and 0.4 kcal mol(-1), respectively. The (CH2O)2 and CH2O/CH2S global minimum is the same at every level of theory. However, the MP2 methods overbind (CH2S)2 by as much as 1.1 kcal mol(-1), effectively altering the energetic ordering of the thioformaldehyde dimer minima relative to the CCSD(T)-F12 energies. The CCSD(T)-F12 binding energies of the (CH2O)2 and CH2O/CH2S stationary points are quite similar, with the former ranging from around -2.4 to -4.6 kcal mol(-1) and the latter from about -1.1 to -4.4 kcal mol(-1). Corresponding (CH2S)2 stationary points have appreciably smaller CCSD(T)-F12 binding energies ranging from ca. -1.1 to -3.4 kcal mol(-1). The vibrational frequency shifts upon dimerization are also reported for each minimum on the MP2 potential energy surfaces.

摘要

本研究采用相关的从头算电子结构方法,首次对均相硫甲醛二聚体(CH₂S)₂的五个驻点以及异相甲醛/硫甲醛二聚体CH₂O/CH₂S的七个驻点进行了表征。使用二阶Møller-Plesset微扰理论(MP2)和13种不同的密度泛函,结合扩展了弥散函数和多组极化函数的三重ζ基组,计算了完全几何优化和相应的简谐振动频率。MP2结果表明,(CH₂S)₂的三个驻点和CH₂O/CH₂S的四个驻点是极小值,这与甲醛二聚体(CH₂O)₂的两个驻点不同。还使用显式相关的MP2-F12和CCSD(T)-F12方法以及大至重原子增强的cc-pVTZ基组计算了单点能量。(CH₂O)₂和CH₂O/CH₂S的MP2和MP2-F12结合能与CCSD(T)-F12结合能的偏差分别不超过0.2和0.4 kcal mol⁻¹。在每个理论水平上,(CH₂O)₂和CH₂O/CH₂S的全局最小值都是相同的。然而,MP2方法对(CH₂S)₂的过度结合高达1.1 kcal mol⁻¹,有效地改变了硫甲醛二聚体极小值相对于CCSD(T)-F12能量的能量顺序。(CH₂O)₂和CH₂O/CH₂S驻点的CCSD(T)-F12结合能非常相似,前者范围约为-2.4至-4.6 kcal mol⁻¹,后者约为-1.1至-4.4 kcal mol⁻¹。相应的(CH₂S)₂驻点具有明显较小的CCSD(T)-F12结合能,范围约为-1.1至-3.4 kcal mol⁻¹。还报道了MP2势能面上每个极小值二聚化时的振动频率变化。

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