Bünnemann Karoline, Merten Christian
Ruhr Universität Bochum, Organische Chemie 2, Universitätsstraße 150, 44801 Bochum, Germany.
Phys Chem Chem Phys. 2017 Jul 26;19(29):18948-18956. doi: 10.1039/c7cp02049j.
Strong hydrogen bonding to solvent molecules can significantly alter the IR and VCD spectra of a chiral solute. This can be particularly troublesome for the determination of absolute configurations, as all spatial configurations of solute-solvent clusters need to be considered explicitly in spectra calculations. With this contribution, we aim to derive general guidelines for the explicit solvation of carboxylic acids, and characterize the solute-solvent interactions of the model compound α-methoxyphenylacetic acid (MPAA) in organic solvents of different polarity. We show that, in the typical concentration range employed for VCD studies, MPAA prefers the formation of dimers in chloroform. In the other investigated solvents (acetonitrile, methanol, and dimethyl sulfoxide), hydrogen bonded solute-solvent clusters have to be considered explicitly for the spectral analysis. We discuss the origin of the solvent dependence of the VCD spectra of MPAA in detail, show which vibrational modes are most strongly affected, and that the spectral response correlates with the hydrogen bonding strength.
与溶剂分子形成的强氢键会显著改变手性溶质的红外光谱和振动圆二色光谱。这对于绝对构型的测定可能特别麻烦,因为在光谱计算中需要明确考虑溶质 - 溶剂簇的所有空间构型。在本论文中,我们旨在推导羧酸明确溶剂化的一般指导原则,并表征模型化合物α - 甲氧基苯乙酸(MPAA)在不同极性有机溶剂中的溶质 - 溶剂相互作用。我们表明,在用于振动圆二色性研究的典型浓度范围内,MPAA在氯仿中倾向于形成二聚体。在其他研究的溶剂(乙腈、甲醇和二甲基亚砜)中,进行光谱分析时必须明确考虑氢键连接的溶质 - 溶剂簇。我们详细讨论了MPAA振动圆二色光谱溶剂依赖性的起源,指出哪些振动模式受影响最强,并且光谱响应与氢键强度相关。