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Differentiation of Meso Isomers from Racemic Mixtures with the Combined Use of Chiral Shift Reagents and Two-Dimensional Heteronuclear Correlation NMR Spectroscopy

机译:外消旋混合物的内消旋异构体与手性转移试剂和二维异核相关核磁共振谱法的结合使用

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摘要

In the presence of chiral shift reagents the enantiotopic nuclei of a pair of enantiomers become diastereotopic and have the potential to give resolved NMR signals. Similarly, the enantiotopic nuclei within a meso isomer become diastereotopic in the presence of a chiral shift reagent and may give resolved NMR signals. However, the diastereotopic nuclei of a meso isomer mixed with a chiral shift reagent, unlike those of a racemic mixture, are located in the same molecule. Their intramolecular character can be established experimentally by detection of spin-spin splitting between them or to a common third nucleus. Comparison of the correlation peaks in a two-dimensional, heteronuclear, multiple-quantum correlation (HMQC) spectrum with those of a heteronuclear multiple-bond correlation (HMBC) spectrum is an effective means of detection of coupling to a third nucleus. Two-dimensional NMR spectroscopy was used to identify the meso form of di-(trans-2-aminocyclohexyl)amine.
机译:在手性位移试剂的存在下,一对对映异构体的对映体核变为非对映体,并具有产生解析的NMR信号的潜力。类似地,在手性位移试剂的存在下,内消旋异构体中的对映体核变为非对映体,并可能给出已解析的NMR信号。然而,与外消旋混合物不同,与手性转移试剂混合的内消旋异构体的非对映体核位于同一分子中。它们的分子内特性可通过检测它们之间或与共同的第三核之间的自旋-自旋分裂来实验确定。比较二维异核多量子相关(HMQC)光谱中的相关峰和异核多键相关(HMBC)光谱中的相关峰是检测与第三核耦合的有效手段。使用二维NMR光谱法鉴定二-(反式-2-氨基环己基)胺的内消旋形式。

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