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二氧化硫-水络合物:堆积和氢键二聚体的CCSD(T)/CBS非谐振动光谱

The sulfur dioxide-water complex: CCSD(T)/CBS anharmonic vibrational spectroscopy of stacked and hydrogen-bonded dimers.

作者信息

Hui Wallace C H, Lemke Kono H

机构信息

Department of Earth Sciences, University of Hong Kong, Pokfulam Road, Hong Kong SAR.

出版信息

J Chem Phys. 2024 Feb 7;160(5). doi: 10.1063/5.0177077.

Abstract

This study examines the structures, energies, and IR vibrational spectra of the sulfur dioxide-water SO2(H2O) complexes by employing coupled cluster theory CCSD(T) with Dunning style correlation consistent type basis sets aug-cc-pV(n+d)Z (n = D, T, Q, 5). Complete basis set (CBS) extrapolations have been carried out to predict binding energies for two isomers of the SO2(H2O) complex: a stacked global minimum (1A) structure and a hydrogen-bonded local minimum (1B) structure. The CCSD(T)/CBS extrapolation predicts an intermolecular S-O distance rS⋯O = 2.827 Å for the stacked isomer, which is in excellent agreement with an experimental measurement of 2.824 Å [K. Matsumura et al., J. Chem. Phys., 91, 5887 (1989)]. The CCSD(T)/CBS binding energy for the stacked dimer 1A and hydrogen-bonded form 1B is De = -4.37 kcal/mol and De = -2.40 kcal/mol, respectively. This study also employs anharmonic VPT2 MP2/aug-cc-pV(n+d)Z level corrections to CCSD(T)/aug-cc-pV(n+d)Z vibrational frequencies in both forms of SO2(H2O). The anharmonic CCSD(T)/aug-cc-pV(Q+d)Z OH stretching frequencies in the stacked structure 1A are 3743 cm-1 (ν3) and 3647 cm-1 (ν1), and these align well with the recorded IR spectroscopic values of 3745 and 3643 cm-1, respectively [C. Wang et al., J. Phys. Chem. Lett., 13, 5654 (2022)]. If we combine CCSD(T)/aug-cc-pV(n+d)Z De values with VPT2 vibrational frequencies, we obtain a new CCSD(T)/aug-cc-pV(Q+d)Z anharmonic dissociation energy D0 = -3.48 kcal/mol for 1A and D0 = -1.74 kcal/mol for 1B. In summary, the results presented here demonstrate that the application of CCSD(T) calculations with aug-cc-pV(n+d)Z basis sets and CBS extrapolations is critical in probing the structure and IR spectroscopic properties of the sulfur dioxide-water complex.

摘要

本研究采用耦合簇理论CCSD(T)以及邓宁风格的相关一致型基组aug-cc-pV(n+d)Z(n = D、T、Q、5),研究了二氧化硫-水SO₂(H₂O)络合物的结构、能量和红外振动光谱。已进行完备基组(CBS)外推,以预测SO₂(H₂O)络合物两种异构体的结合能:一种是堆叠式全局最小值(1A)结构,另一种是氢键结合的局部最小值(1B)结构。CCSD(T)/CBS外推预测堆叠异构体的分子间S-O距离rS⋯O = 2.827 Å,这与2.824 Å的实验测量值[K. Matsumura等人,《化学物理杂志》,91, 5887 (1989)]高度吻合。堆叠二聚体1A和氢键结合形式1B的CCSD(T)/CBS结合能分别为De = -4.37 kcal/mol和De = -2.40 kcal/mol。本研究还对SO₂(H₂O)两种形式的CCSD(T)/aug-cc-pV(n+d)Z振动频率采用非谐VPT2 MP2/aug-cc-pV(n+d)Z水平校正。堆叠结构1A中非谐CCSD(T)/aug-cc-pV(Q+d)Z的OH伸缩频率分别为3743 cm⁻¹(ν3)和3647 cm⁻¹(ν1),这与记录的红外光谱值3745和3643 cm⁻¹分别吻合得很好[C. Wang等人,《物理化学快报》,13, 5654 (2022)]。如果将CCSD(T)/aug-cc-pV(n+d)Z的De值与VPT2振动频率相结合,我们得到1A的新的CCSD(T)/aug-cc-pV(Q+d)Z非谐解离能D0 = -3.48 kcal/mol,1B的D0 = -1.74 kcal/mol。总之,此处给出的结果表明,使用aug-cc-pV(n+d)Z基组和CBS外推的CCSD(T)计算对于探究二氧化硫-水络合物的结构和红外光谱性质至关重要。

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