Departamento de Química Orgánica e Inorgánica, Instituto Universitario de Biotecnología de Asturias, Universidad de Oviedo, 33071 Oviedo, Spain.
Chemistry. 2010 Jan 18;16(3):836-47. doi: 10.1002/chem.200901623.
This paper reports a simple and robust modular synthetic strategy that leads to a large variety of configurationally and structurally diverse imidazole-based chiral ionic liquids (CILs) by lipase-catalyzed resolution. The intimate microscopic interactions of the supramolecular ionic network of these imidazolium chiral salts at the molecular level are investigated both spectroscopically (NMR, FT-IR-ATR) and theoretically, and a topological analysis of the experimental electron densities obtained by X-ray diffraction of single crystals is performed. Our results support the key role played by the relative configuration of the -OR group on the hydrogen-bonding pattern and its strong influence on the final physical properties of the imidazolium salt. We also obtained a reasonable correlation between the observed melting point and the non-covalent interactions. The spectroscopic data and the topological analysis reflect the key role played by hydrogen bonds between the OH and imidazolium C2H groups in both cation-anion and cation-cation interactions, with the presence of an OH group leading to an additional inter-cation interaction. This interaction significantly affects the properties of stereoisomeric salts. Even more interestingly, we also studied the effect of the chirality by comparing enantiopure CILs with their racemic mixtures and found that, with the exception of trans-Cy6-OH-Im-Bn-Br, the melting points of the racemic mixtures are higher than those of the corresponding enantiomerically pure forms. For stereoisomeric examples, we have successfully explained the differences in melting temperatures in light of the corresponding structural data. Chirality should therefore be taken into account as a highly attractive design vector in the preparation of ILs with specifically desired properties.
本文报道了一种简单而稳健的模块化合成策略,通过脂肪酶催化拆分,可以得到多种结构和构型多样的咪唑基手性离子液体(CILs)。通过光谱(NMR、FT-IR-ATR)和理论研究,研究了这些手性咪唑盐超分子离子网络在分子水平上的微观相互作用,并对单晶 X 射线衍射获得的实验电子密度进行了拓扑分析。我们的结果支持了 -OR 基团的相对构型在手性盐氢键模式中起关键作用的观点,以及它对手性盐最终物理性质的强烈影响。我们还获得了观察到的熔点与非共价相互作用之间的合理相关性。光谱数据和拓扑分析反映了 OH 和咪唑 C2H 基团之间氢键在手性盐的阴阳离子和阳离子-阳离子相互作用中的关键作用,OH 基团的存在导致额外的阳离子-阳离子相互作用。这种相互作用显著影响了立体异构盐的性质。更有趣的是,我们还通过比较对映纯 CIL 与其外消旋混合物来研究手性的影响,发现除了反式 Cy6-OH-Im-Bn-Br 外,外消旋混合物的熔点高于相应的对映纯形式。对于立体异构实例,我们根据相应的结构数据成功解释了熔点差异。因此,在制备具有特定所需性质的 IL 时,应将手性视为极具吸引力的设计向量。