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胺和二羧酸水合分子簇的理论研究。

A theoretical study of hydrated molecular clusters of amines and dicarboxylic acids.

机构信息

Department of Chemistry, Texas A&M University, College Station, Texas 77843, USA.

出版信息

J Chem Phys. 2013 Aug 14;139(6):064312. doi: 10.1063/1.4817497.

Abstract

Amines and carboxylic acids have been recognized as important precursor species in atmospheric new particle formation. In this study, the interaction between dimethylamine and succinic acid is investigated using Basin Paving Monte Carlo (BPMC) sampling with the classical force field to obtain low energy conformers of dimethylamine and succinic acid hydrated molecular clusters. Geometry optimization and frequency calculations are further performed on the basis of the BPMC results using density functional theory. At standard temperature and pressure, dimethylamine binds to succinic acid with a bonding energy of 14.2 kcal mol(-1), smaller than that of dimethylamine with sulfuric acid (21.1 kcal mol(-1)). Hydration promotes proton transfer from succinic acid to dimethylamine and consequently increases the interaction strength, while proton transfer from sulfuric acid to dimethylamine occurs without hydration. On the other hand, the reactivity of sulfuric acid with dimethylamine decreases with the degree of hydration of sulfuric acid. The free energies of formation for hydrated clusters consisting of dimethylamine and succinic acid reveal that the interaction between amines and dicarboxylic acids likely exerts a synergetic effect on atmospheric aerosol nucleation by formation of aminium carboxylate ion pairs.

摘要

胺和羧酸被认为是大气中新粒子形成过程中的重要前体物质。在这项研究中,我们使用经典力场的盆地踏石蒙特卡罗(BPMC)采样方法研究了二甲胺和琥珀酸之间的相互作用,以获得二甲胺和琥珀酸水合分子团簇的低能构象。在此基础上,基于 BPMC 结果,使用密度泛函理论进一步进行了几何优化和频率计算。在标准温度和压力下,二甲胺与琥珀酸的结合能为 14.2 kcal/mol,小于二甲胺与硫酸(21.1 kcal/mol)的结合能。水合作用促进了质子从琥珀酸向二甲胺的转移,从而增加了相互作用强度,而硫酸向二甲胺的质子转移则不需要水合作用。另一方面,硫酸与二甲胺的反应性随硫酸水合程度的增加而降低。由二甲胺和琥珀酸组成的水合团簇的生成自由能表明,胺和二羧酸之间的相互作用可能通过形成铵羧酸盐离子对对大气气溶胶成核产生协同效应。

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