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甲磺酸与HSO团簇之间与大气相关的氢键相互作用:一项计算研究。

Atmospherically Relevant Hydrogen-Bonded Interactions between Methanesulfonic Acid and HSO Clusters: A Computational Study.

作者信息

de Souza Gonçalves Douglas, Chaudhuri Puspitapallab

机构信息

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

出版信息

J Phys Chem A. 2020 Dec 31;124(52):11072-11085. doi: 10.1021/acs.jpca.0c09087. Epub 2020 Dec 18.

Abstract

A detailed and systematic quantum-chemical calculation has been performed with high-level density functional theory (DFT) to analyze the electrostatic interaction of methanesulfonic acid (CHSOH), also known as MSA, with pre-formed clusters of sulfuric acid (HSO) molecules in ambient conditions. Both MSA and HSO are considered as atmospheric molecules that might play active roles in aerosol formation. The interactions between MSA and HSO clusters lead to the formation of MSA···(HSO) ( = 2, 3) complexes stabilized by the formation of different types of intermolecular hydrogen bond networks. Analyses of cluster binding energies and free energy changes associated with their formation indicate that MSA could bring additional stability into the atmospheric molecular clusters responsible for aerosol formation. Variations of Gibbs free energy with temperature and pressure have been analyzed. The lower temperatures and pressures at the higher altitudes of the troposphere are found to play in favor of higher stability of the MSA···(HSO) clusters. Effects of hydrogen bond formation on dipole moment, mean polarizability, and anisotropy of polarizability of the clusters have been analyzed. Rayleigh scattering intensities are found to increase many-fold when light interacts with the MSA···(HSO) clusters.

摘要

已使用高级密度泛函理论(DFT)进行了详细且系统的量子化学计算,以分析甲磺酸(CH₃SO₃H),也称为MSA,在环境条件下与预先形成的硫酸(H₂SO₄)分子簇的静电相互作用。MSA和H₂SO₄都被视为可能在气溶胶形成中发挥积极作用的大气分子。MSA与H₂SO₄簇之间的相互作用导致形成通过不同类型分子间氢键网络的形成而稳定的MSA···(H₂SO₄)ₙ(n = 2, 3)配合物。对簇结合能和与其形成相关的自由能变化的分析表明,MSA可以为负责气溶胶形成的大气分子簇带来额外的稳定性。已分析了吉布斯自由能随温度和压力的变化。发现对流层较高海拔处较低的温度和压力有利于MSA···(H₂SO₄)ₙ簇的更高稳定性。已分析了氢键形成对簇的偶极矩、平均极化率和极化率各向异性的影响。发现当光与MSA···(H₂SO₄)ₙ簇相互作用时,瑞利散射强度会增加许多倍。

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