Davies Julia A, Hanson-Heine Magnus W D, Besley Nicholas A, Shirley Andrew, Trowers James, Yang Shengfu, Ellis Andrew M
Department of Chemistry, University of Leicester, University Road, Leicester, LE1 7RH, UK.
Phys Chem Chem Phys. 2019 Jul 3;21(26):13950-13958. doi: 10.1039/c8cp05934a.
The structural arrangement of small carboxylic acid molecules in the liquid phase remains a controversial topic. Some studies indicate a dominance of the cyclic dimer that prevails in the gas phase, whilst other studies favor short fragments of the infinite catemer chains that are found in the crystalline phase. Furthermore, difficulties in preparing and probing size-selected catemer segments have resulted in a lack of benchmark data upon which theoretical models of the condensed phases can be built. To address these issues, we have combined infrared spectroscopy and quantum chemical calculations to explore regions of the intermolecular potential energy surface associated with the formation of metastable dimer isomers. The OH stretching region of the spectrum shows that aggregation of acetic acid molecules inside liquid helium nanodroplets yields two distinct metastable dimers, whilst negligible signal is observed from the cyclic dimer that typically overwhelms this spectral region. We deduce that the most abundant isomer in superfluid helium has one strong O-HO[double bond, length as m-dash]C and one weak C-HO[double bond, length as m-dash]C hydrogen bond. Since this bonding motif is common to the dimeric repeating unit of the catemer, it is of fundamental importance for understanding intermolecular interactions in the condensed phases of small carboxylic acids.
小羧酸分子在液相中的结构排列仍是一个有争议的话题。一些研究表明,在气相中占主导地位的环状二聚体在液相中也占主导,而其他研究则倾向于在晶相中发现的无限链状三聚体的短片段。此外,制备和探测尺寸选择的三聚体片段存在困难,导致缺乏可用于构建凝聚相理论模型的基准数据。为了解决这些问题,我们结合了红外光谱和量子化学计算,以探索与亚稳态二聚体异构体形成相关的分子间势能面区域。光谱的OH伸缩区域表明,液氦纳米液滴内乙酸分子的聚集产生了两种不同的亚稳态二聚体,而在通常主导该光谱区域的环状二聚体中观察到的信号可以忽略不计。我们推断,超流氦中最丰富的异构体有一个强的O-H…O═C和一个弱的C-H…O═C氢键。由于这种键合模式是三聚体二聚体重复单元所共有的,因此对于理解小羧酸凝聚相中的分子间相互作用至关重要。