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自旋态选择性相干转移:一种用于区分和完整分析对映体重叠且未解析的¹H NMR谱的方法。

Spin state selective coherence transfer: a method for discrimination and complete analyses of the overlapped and unresolved 1H NMR spectra of enantiomers.

作者信息

Baishya Bikash, Prabhu Uday Ramesh, Suryaprakash N

机构信息

Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560 012, India.

出版信息

J Magn Reson. 2008 May;192(1):101-11. doi: 10.1016/j.jmr.2008.02.005. Epub 2008 Feb 12.

Abstract

In general, the proton NMR spectra of chiral molecules aligned in the chiral liquid crystalline media are broad and featureless. The analyses of such intricate NMR spectra and their routine use for spectral discrimination of R and S optical enantiomers are hindered. A method is developed in the present study which involves spin state selective two dimensional correlation of higher quantum coherence to its single quantum coherence of a chemically isolated group of coupled protons. This enables the spin state selective detection of proton single quantum transitions based on the spin states of the passive nuclei. The technique provides the relative signs and magnitudes of the couplings by overcoming the problems of enantiomer discrimination, spectral complexity and poor resolution, permitting the complete analyses of the otherwise broad and featureless spectra. A non-selective 180 degrees pulse in the middle of MQ dimension retains all the remote passive couplings. This accompanied by spin selective MQ-SQ conversion leads to spin state selective coherence transfer. The removal of field inhomogeneity contributes to dramatically enhanced resolution. The difference in the cumulative additive values of chemical shift anisotropies and the passive couplings, between the enantiomers, achieved by detecting Nth quantum coherence of N magnetically equivalent spins provides enhanced separation of enantiomer peaks. The developed methodology has been demonstrated on four different chiral molecules with varied number of interacting spins, each having a chiral centre.

摘要

一般来说,在手性液晶介质中排列的手性分子的质子核磁共振谱很宽且无特征。对这种复杂的核磁共振谱进行分析以及将其常规用于R和S光学对映体的光谱鉴别都受到阻碍。本研究开发了一种方法,该方法涉及对化学上孤立的耦合质子基团的高量子相干与其单量子相干进行自旋态选择性二维关联。这使得能够基于被动核的自旋态对质子单量子跃迁进行自旋态选择性检测。该技术通过克服对映体鉴别、光谱复杂性和分辨率差等问题,提供了耦合的相对符号和大小,从而能够对原本宽泛且无特征的光谱进行完整分析。在MQ维度中间的一个非选择性180度脉冲保留了所有远程被动耦合。这与自旋选择性MQ-SQ转换一起导致自旋态选择性相干转移。消除场不均匀性有助于显著提高分辨率。通过检测N个磁等价自旋的第N量子相干,对映体之间化学位移各向异性和被动耦合的累积相加值的差异实现了对映体峰的增强分离。已在四个具有不同数量相互作用自旋且每个都有一个手性中心的不同手性分子上证明了所开发的方法。

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