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Multi-nuclear NMR of axially chiral biaryls in polypeptide orienting solvents: spectral discriminations and enantiorecognition mechanisms

机译:多肽定向溶剂中轴向手性联芳基的多核NMR:光谱鉴别和对映体识别机制

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摘要

Due to the importance of axially chiral biaryl derivatives as chiral auxiliaries and/or ligands for asymmetric synthesis, as well as their structural role in bioactive natural products, continuous efforts have been undertaken to propose efficient methods for their atropo-selective synthesis. As a consequence, proposing robust and reliable analytical tools that are able to discriminate the spectral signal of atropisomeric enantiomers becomes crucial to evaluate the enantiomeric excesses of mixtures. In this work, we show how several multi-nuclear 1D/2D-NMR techniques using homopolypeptide chiral liquid crystals as aligning solvents can provide a panel of analytical possibilities (through differences of chemical shift anisotropies, dipolar and quadrupolar residual couplings) to spectrally discriminate enantiomers of a large collection of trisubstituted axially chiral biphenyls. Approaches involving P-31, C-13 and H-2 1D- or 2D-NMR experiments at natural abundance levels are explored. Among noteworthy results, the first examples of spectral enantioseparations using P-31 nuclei as nuclear probe are reported. Finally, the roles of electronic factors and shape anisotropy in the efficiency of chiral discrimination mechanisms are examined and discussed. Molecular modeling calculations were carried out to establish the electronic profile of these analytes in order to understand and rationalize the C-13-{H-1} NMR results.
机译:由于轴向手性联芳基衍生物作为用于不对称合成的手性助剂和/或配体的重要性,以及它们在生物活性天然产物中的结构作用,已经进行了持续的努力以提出用于其对映体选择性合成的有效方法。结果,提出一种能够区分阻转异构对映体的光谱信号的鲁棒且可靠的分析工具对于评估混合物的对映异构体过量至关重要。在这项工作中,我们展示了几种使用同多肽手性液晶作为取向溶剂的多核1D / 2D-NMR技术如何提供一组分析可能性(通过化学位移各向异性,偶极和四极残余偶合的差异)来光谱区分对映体大量的三取代的轴向手性联苯。探索了在自然丰度水平下涉及P-31,C-13和H-2 1D-或2D-NMR实验的方法。在值得注意的结果中,报告了使用P-31核作为核探针的光谱对映体分离的第一个实例。最后,研究和讨论了电子因素和形状各向异性在手性识别机制效率中的作用。为了理解和合理化C-13- {H-1} NMR结果,进行了分子建模计算以建立这些分析物的电子分布。

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