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与大气相关的氢键连接的甲磺酸···(HSO) ( = 1 - 3) 团簇的振动光谱

Vibrational Spectra of Atmospherically Relevant Hydrogen-Bonded MSA···(HSO) ( = 1-3) Clusters.

作者信息

Gonçalves Douglas de Souza, Ghosh Angsula, Chaudhuri Puspitapallab

机构信息

Department of Physics, Federal University of Amazonas, 69077-000 Manaus, Amazonas, Brazil.

出版信息

J Phys Chem A. 2021 Oct 14;125(40):8791-8802. doi: 10.1021/acs.jpca.1c05214. Epub 2021 Oct 4.

Abstract

Methanesulfonic acid (CHSOH), also known as MSA, has been found to be capable of forming a strong hydrogen-bonded interaction with sulfuric acid (HSO) under ambient conditions. The energetic stability of the MSA···HSO clusters increases with decreasing temperature at higher altitudes in the troposphere, which is relevant in the context of atmospheric aerosol formation. We have performed, in the present work, a detailed and systematic quantum-chemical calculation with high-level density functional theory to characterize the hydrogen bond formation in the binary MSA···HSO, ternary MSA···(HSO), and quaternary MSA···(HSO) clusters. The five different conformations of MSA···(HSO) and six conformations of MSA···(HSO), considered in the present work for the spectroscopic analysis, have been taken from our previous work [. 11072-11085]. The hydrogen bonds were analyzed on the basis of infrared vibrational frequencies of different O-H stretching modes and quantum theory of atoms in molecules (QTAIM). A strong positive correlation has been observed between the red shift of the OH groups in MSA and HSO and the corresponding O-H elongation as a result of hydrogen bond formation. Topological analysis employing QTAIM shows that most of the charge density and the Laplacian values at bond critical points (BCPs) of the hydrogen bonds of the MSA···(HSO) ( = 1-3) complexes fall within the standard hydrogen-bond criteria. However, those outside these criteria fall in the category of a very strong hydrogen bond with a hydrogen bond length as low as 1.41 Å and an O-H bond elongation as high as 0.096 Å. In general, the charge densities of the BCPs located on hydrogen bonds increase as the hydrogen-bond lengths decrease. Proportionately, a larger number of hydrogen bonds in ternary MSA···(HSO) demonstrate a partial covalent character when compared with the quaternary clusters.

摘要

甲磺酸(CH₃SO₃H),也被称为MSA,已被发现能够在环境条件下与硫酸(H₂SO₄)形成强烈的氢键相互作用。在对流层较高海拔处,MSA···H₂SO₄团簇的能量稳定性随温度降低而增加,这与大气气溶胶形成的背景相关。在本工作中,我们使用高水平密度泛函理论进行了详细且系统的量子化学计算,以表征二元MSA···H₂SO₄、三元MSA···(H₂SO₄)₂和四元MSA···(H₂SO₄)₃团簇中的氢键形成。本工作中用于光谱分析的MSA···(H₂SO₄)₂的五种不同构象和MSA···(H₂SO₄)₃的六种构象取自我们之前的工作[11072 - 11085]。基于不同O - H伸缩模式的红外振动频率和分子中的原子量子理论(QTAIM)对氢键进行了分析。已观察到MSA和H₂SO₄中OH基团的红移与氢键形成导致的相应O - H伸长之间存在很强的正相关。采用QTAIM的拓扑分析表明,MSA···(H₂SO₄)ₙ(n = 1 - 3)配合物氢键的键临界点(BCPs)处的大部分电荷密度和拉普拉斯值都落在标准氢键标准范围内。然而,那些超出这些标准的属于非常强的氢键类别,氢键长度低至1.41 Å,O - H键伸长高达0.096 Å。一般来说,位于氢键上的BCPs的电荷密度随着氢键长度的减小而增加。相应地,与四元团簇相比,三元MSA···(H₂SO₄)₂中有更多的氢键表现出部分共价特征。

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