Hu Yuan-Chun, Zhang Xiu-Hui, Li Quan-Song, Zhang Yun-Hong, Li Ze-Sheng
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 100081, P.R. China.
Chemphyschem. 2017 Dec 6;18(23):3375-3383. doi: 10.1002/cphc.201700950. Epub 2017 Oct 27.
As the simplest and most abundant dicarboxylic acid in the atmosphere, oxalic acid (OA) not only plays a key role in aerosol nucleation, but also acts as a prototypical compound for the investigation of intra- and intermolecular hydrogen-bonding interactions. A systematic theoretical study on the hydrated OA dimers performed by using DFT at the M06-2X/6-311++G(3df, 2p) level is discussed herein. The properties of hydrogen bonds in clusters are inspected through topological analysis by using atoms in molecules (AIM) theory. The most stable OA dimer involves a cyclic structure with two intermolecular hydrogen bonds. Calculations show that one H O has a slight effect on the hydrogen bonds, whereas two water molecules weaken and three water molecules break the two intermolecular hydrogen bonds between OAs. Furthermore, there are no hydrogen-bond interactions between OAs in almost all stable clusters as the number of H O molecules increases to four and five. Additionally, ionization and isomerization of OA through water-assisted proton-transfer phenomena are observed in tetra- and pentahydrates. This work provides new insights into the conversion of anhydrous OA into hydrated clusters that are helpful for further understanding the atmospheric nucleation process and nature of hydrogen bond.
作为大气中最简单且含量最丰富的二元羧酸,草酸(OA)不仅在气溶胶成核过程中起着关键作用,还作为研究分子内和分子间氢键相互作用的典型化合物。本文讨论了在M06 - 2X/6 - 311++G(3df, 2p)水平上使用密度泛函理论(DFT)对水合草酸二聚体进行的系统理论研究。通过使用分子中的原子(AIM)理论进行拓扑分析来考察团簇中氢键的性质。最稳定的草酸二聚体包含一个具有两个分子间氢键的环状结构。计算表明,一个水分子对氢键有轻微影响,而两个水分子会削弱氢键,三个水分子则会破坏草酸分子间的两个氢键。此外,随着水分子数量增加到四个和五个,几乎所有稳定团簇中的草酸分子间都不存在氢键相互作用。另外,在四水合物和五水合物中观察到了通过水辅助质子转移现象导致的草酸电离和异构化。这项工作为无水草酸向水合团簇的转化提供了新的见解,有助于进一步理解大气成核过程和氢键的本质。