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关于 H2SO4···HOO˙···(H2O)n(n=0-2) 簇中耦合相互作用的理论研究:旨在理解水分子在硫酸气溶胶吸收 HOO˙ 自由基过程中的作用。

Theoretical studies on the coupling interactions in H2SO4···HOO˙···(H2O)n (n = 0-2) clusters: toward understanding the role of water molecules in the uptake of HOO˙ radical by sulfuric acid aerosols.

机构信息

Key Laboratory of Life-Organic Analysis, School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, 273165, PR China.

出版信息

Phys Chem Chem Phys. 2011 Jan 21;13(3):941-53. doi: 10.1039/c0cp00908c. Epub 2010 Nov 5.

DOI:10.1039/c0cp00908c
PMID:21052607
Abstract

A detailed knowledge of coupling interactions among sulfuric acid (H(2)SO(4)), the hydroperoxyl radical (HOO˙), and water molecules (H(2)O) is crucial for the better understanding of the uptake of HOO˙ radicals by sulfuric acid aerosols at different atmospheric humidities. In the present study, the equilibrium structures, binding energies, equilibrium distributions, and the nature of the coupling interactions in H(2)SO(4)···HOO˙···(H(2)O)(n) (n = 0-2) clusters have been systematically investigated at the B3LYP/6-311++G(3df,3pd) level of theory in combination with the atoms in molecules (AIM) theory, natural bond orbital (NBO) method, energy decomposition analyses, and ab initio molecular dynamics. Two binary, five ternary, and twelve tetramer clusters possessing multiple intermolecular H-bonds have been located on their potential energy surfaces. Two different modes for water molecules have been observed to influence the coupling interactions between H(2)SO(4) and HOO˙ through the formations of intermolecular H-bonds with or without breaking the original intermolecular H-bonds in the binary H(2)SO(4)···HOO˙ cluster. It was found that the introduction of one or two water molecules can efficiently enhance the interactions between H(2)SO(4) and HOO˙, implying the positive role of water molecules in the uptake of the HOO˙ radical by sulfuric acid aerosols. Additionally, the coupling interaction modes of the most stable clusters under study have been verified by the ab initio molecular dynamics.

摘要

详细了解硫酸(H(2)SO(4))、过氧氢自由基(HOO˙)和水分子(H(2)O)之间的耦合相互作用对于更好地理解在不同大气湿度下HOO˙自由基被硫酸气溶胶吸收至关重要。在本研究中,我们在 B3LYP/6-311++G(3df,3pd)理论水平上,结合原子分子(AIM)理论、自然键轨道(NBO)方法、能量分解分析和从头算分子动力学,系统地研究了 H(2)SO(4)···HOO˙···(H(2)O)(n)(n = 0-2)簇的平衡结构、结合能、平衡分布以及耦合相互作用的性质。在它们的势能表面上定位了两个二元、五个三元和十二个四元簇,这些簇具有多个分子间氢键。观察到水分子的两种不同模式通过与二元 H(2)SO(4)···HOO˙簇中的原始分子间氢键形成或不打破原始分子间氢键来影响 H(2)SO(4)和 HOO˙之间的耦合相互作用。结果发现,引入一个或两个水分子可以有效地增强 H(2)SO(4)和 HOO˙之间的相互作用,这意味着水分子在硫酸气溶胶吸收 HOO˙自由基方面发挥了积极作用。此外,通过从头算分子动力学验证了研究中最稳定簇的耦合相互作用模式。

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