Lesot Philippe, Sarfati Muriel, Courtieu Jacques
Laboratoire de Chimie Structurale Organique, Université de Paris-Sud, Bât. 410, ICMMO, UMR 8074, 91405 Orsay cedex, France.
Chemistry. 2003 Apr 14;9(8):1724-45. doi: 10.1002/chem.200390199.
Polymeric chiral liquid-crystalline solvents based on homopolypeptides are of interest with the view to discriminate between enantiomeric pairs of chiral hydrocarbons using proton-decoupled deuterium one- and two-dimensional NMR spectroscopy at natural abundance level. This method offers the major advantage that neither chemical modification nor isotopic labelling of the solutes to be studied is required. Chiral differentiation between optical isomers is observed through a difference in residual deuterium quadrupolar splittings. The spectroscopic separations and the S/N ratio from the spectra are usually large enough to measure the enantiomeric excess with an accuracy varying between 5 to 10 %. This analytical approach is successfully applied to a large collection of chiral, rigid or flexible unsaturated as well as saturated hydrocarbons, including cases of axial chirality, atropoisomerism, and moieties existing as a mixture of enantiomers interconverting by ring inversion. Using the results reported in literature, a systematic comparison with other analytical strategies (NMR, GC, HPLC, VCD) is made and discussed. Also, a tentative proposal to rationalise the various results in terms of chiral differentiation and enantioselective shape recognition is presented. We show that this original tool provides an attractive and incisive alternative to the existing analytical techniques for studying nonfunctionalised chiral materials.
基于均聚多肽的聚合手性液晶溶剂备受关注,因为它能够在天然丰度水平下,利用质子去耦氘一维及二维核磁共振光谱法区分手性烃的对映体对。该方法的主要优点在于,无需对待研究的溶质进行化学修饰或同位素标记。通过残余氘四极分裂的差异来观察光学异构体之间的手性区分。光谱分离以及光谱的信噪比通常足够大,能够以5%至10%的精度测量对映体过量。这种分析方法已成功应用于大量手性、刚性或柔性不饱和以及饱和烃,包括轴手性、阻转异构以及通过环翻转相互转化的对映体混合物形式存在的部分。利用文献报道的结果,对其他分析策略(核磁共振、气相色谱、高效液相色谱、振动圆二色光谱)进行了系统比较和讨论。此外,还提出了一个初步建议,试图根据手性区分和对映选择性形状识别来合理解释各种结果。我们表明,这种原始工具为研究未官能化手性材料的现有分析技术提供了一种有吸引力且深刻的替代方法。