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H2SO2异构体的耦合簇研究。

Coupled-cluster study of isomers of H2SO2.

作者信息

Napolion Brian, Huang Ming-Ju, Watts John D

机构信息

Department of Chemistry, P.O. Box 17910, Jackson State University, Jackson, Mississippi 39217, USA.

出版信息

J Phys Chem A. 2008 May 1;112(17):4158-64. doi: 10.1021/jp8009047. Epub 2008 Apr 10.

Abstract

A theoretical study has been made on six isomers of H2SO2 using coupled-cluster singles and doubles with noniterative triple excitations (CCSD(T)). The isomers studied are sulfoxylic acid (S(OH)2; C2 and Cs conformers), sulfinic acid (HS(=O)OH; 2 C1 conformers), dihydrogen sulfone (H2SO2; C2v), sulfhydryl hydroperoxide (HSOOH; C1), thiadioxirane (Cs), and dihydrogen persulfoxide (H2SOO; Cs). Molecular geometries, harmonic vibrational frequencies, and infrared intensities of all species were obtained using the CCSD(T) method and the 6-311++G(2d,2p) basis set. All aforementioned species were found to be local minima, with the exception of thiadioxirane, which has one imaginary frequency. A prior possible infrared observation of sulfinic acid was reassessed on the basis of the present data. In agreement with previous MP2 results, the present CCSD(T) data provide support for at most 4 of the 8 observed frequencies. The CCSD(T) frequencies and intensities should be of assistance in future identification of H2SO2 isomers by vibrational spectroscopy. Relative energies were calculated using the CCSD(T) method and several larger basis sets. As found previously, the lowest energy species is C2 S(OH)2, followed by Cs S(OH)2, HS(=O)OH, H2SO2, HSOOH, thiadioxirane, and H2SOO. Expanding the basis set significantly reduces the relative energies of HS(=O)OH and H2SO2. The CCSD(T) method was used with extended basis sets (up to aug-cc-pV(Q+d)Z) and basis set extrapolation in two reaction schemes to calculate the DeltaH degrees t (25 degrees C) of C2 S(OH)2. The two reaction schemes gave -285.8 and -282.7 kJ mol-1, which are quite close to a prior theoretical estimate (-290 kJ mol-1).

摘要

利用耦合簇单双激发并包含非迭代三激发(CCSD(T))方法,对H₂SO₂的六种异构体进行了理论研究。所研究的异构体包括亚硫酸(S(OH)₂;C₂和Cs构象)、亚磺酸(HS(=O)OH;2种C₁构象)、二氢砜(H₂SO₂;C₂ᵥ)、巯基过氧化氢(HSOOH;C₁)、硫代二环氧乙烷(Cs)和二氢过氧亚砜(H₂SOO;Cs)。使用CCSD(T)方法和6 - 311++G(2d,2p)基组获得了所有物种的分子几何结构、谐振动频率和红外强度。除硫代二环氧乙烷有一个虚频外,上述所有物种均为局部极小值。基于当前数据重新评估了之前对亚磺酸可能的红外观测。与之前的MP2结果一致,当前的CCSD(T)数据最多为8个观测频率中的4个提供了支持。CCSD(T)频率和强度应有助于未来通过振动光谱法识别H₂SO₂异构体。使用CCSD(T)方法和几个更大的基组计算了相对能量。如之前所发现的,能量最低的物种是C₂ S(OH)₂,其次是Cs S(OH)₂、HS(=O)OH、H₂SO₂、HSOOH、硫代二环氧乙烷和H₂SOO。扩大基组显著降低了HS(=O)OH和H₂SO₂的相对能量。在两个反应方案中,使用扩展基组(直至aug-cc-pV(Q+d)Z)的CCSD(T)方法和基组外推法计算了C₂ S(OH)₂的ΔH°t(25℃)。这两个反应方案给出的值分别为-285.8和-282.7 kJ mol⁻¹,与之前的理论估计值(-290 kJ mol⁻¹)相当接近。

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