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A molecular understanding of the interaction of typical aromatic acids with common aerosol nucleation precursors and their atmospheric implications

机译:对典型芳香酸与常见气溶胶成核前体的分子理解及其大气影响

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Aromatic acids, which are generated from numerous anthropogenic emissions and secondary transformations, have been considered to play a crucial role in new particle formation. In this study, we performed theoretical calculations at the PW91PW91/6-311++G(3df,3pd) level to investigate the interaction between typical aromatic acids namely benzoic acid (BA), phenylacetic acid (PAA), phthalic acid (PA), isophthalic acid (mPA), and terephthalic acid (PTA) and common atmospheric nucleation precursors namely sulfuric acid (SA), water (H2O), ammonia (NH3), methylamine (MA), dimethylamine (DMA), and trimethylamine (TMA). The geometric analysis, Gibbs free energy analysis, OH/NH-stretching vibrational frequency calculation, and atoms in molecules (AIM) analysis were conducted to determine the interactions in the complexes. The heterodimers formed a six to eight membered ring through four types of hydrogen bond, and the bond strength could be ranked in descending order: SO-HMIDLINE HORIZONTAL ELLIPSISO > O-HMIDLINE HORIZONTAL ELLIPSISO/N > N-HMIDLINE HORIZONTAL ELLIPSISO. The BA/PAA/mPA/PTA-SA complexes had the lowest Gibbs free energy values. PA was more likely to interact with NH3 or amines rather than SA due to an intra-molecular hydrogen bond. Additionally, the aromatic acids have similar ability to interact with SA and NH3 as monocarboxylic/dicarboxylic acid. The formation potential of the heterodimers from aromatic acids with common nucleation precursors in ambient atmosphere was investigated.
机译:已被认为是从许多人为排放和二次转化产生的芳族酸,以在新的颗粒形成中发挥至关重要的作用。在这项研究中,我们在PW91PW91 / 6-311 ++ G(3DF,3PD)水平上进行了理论计算,以研究典型的芳族酸即苯甲酸(BA),苯基乙酸(PAA),邻苯二甲酸(PA)之间的相互作用,间苯二甲酸(MPa)和对苯二甲酸(PTA)和常见的大气成核前体,即硫酸(SA),水(H2O),氨(NH3),甲胺(MA),二甲胺(DMA)和三甲胺(TMA) 。进行几何分析,Gibbs自由能量分析,OH / NH拉伸振动频率计算和分子中的原子(AIM)分析以确定复合物中的相互作用。通过四种类型的氢键形成六至八元环,粘合强度可以以降序排列:SO-Hmidline水平椭圆iso> O-hmidline水平椭圆iso / n> n-hmidline水平椭圆iso。 BA / PAA / MPA / PTA-SA复合物具有最低的GIBBS自由能值。由于分子内氢键,PA更可能与NH 3或胺相互作用而不是SA。另外,芳族酸具有与Sa和NH 3相互作用的相似能力,作为单羧酸/二羧酸。研究了来自芳族酸与常见气氛中常见核细胞前体的异二聚体的形成电位。

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    《RSC Advances》 |2019年第62期|共11页
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  • 正文语种 eng
  • 中图分类 化学;
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