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首页> 外文期刊>Chemistry: A European journal >Fast and high-resolution stereochemical analysis by nonuniform sampling and covariance processing of anisotropic natural abundance 2D ~2H NMR datasets
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Fast and high-resolution stereochemical analysis by nonuniform sampling and covariance processing of anisotropic natural abundance 2D ~2H NMR datasets

机译:通过各向异性自然丰度2D〜2H NMR数据集的非均匀采样和协方差处理进行快速,高分辨率的立体化学分析

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摘要

Natural abundance deuterium (NAD) 2D NMR spectroscopy using chiral or achiral liquid crystals is an efficient analytical tool for the stereochemical analysis of enantio- or diastereomers by the virtue of proton-to-deuterium substitution. In particular, it allows the measurement of enantiopurity of organic synthetic molecules or the determination of the natural isotopic ~1H/~2H fractionation in biological molecules, such as fatty acid methyl esters (FAME). So far, the NAD 2D spectra of solutes were acquired by using uniform sampling (US) and processed by conventional 2D Fourier transform (FT), which could result in long measurement times for medium-sized analytes or low solute concentrations. Herein, we demonstrate that this conventional approach can be advantageously replaced by nonuniform sampling (NUS) processed by covariance (Cov) transform. This original spectral reconstruction provides a significant enhancement of spectral resolution, as well as a reduction of measurement times. The application of Cov to NUS data has required the introduction of a regularization procedure in the time domain for the indirect dimension. The analytical potential of combining Cov and NUS is demonstrated by measuring the enantiomeric excess of a scalemic mixture of 2-ethyloxirane and by determining the diastereomeric excess of methyl vernoleate, a natural FAME. These two organic compounds were aligned in a polypeptide (poly(γ-benzyl-L-glutamate)) mesophase. In the case of NAD 2D NMR spectroscopy, we show that Cov and NUS methods allow a decrease in measurement time by a factor of two compared with Cov applied to US data.
机译:使用手性或非手性液晶的天然丰度氘(NAD)2D NMR光谱是质子-氘取代的有效方法,用于对映体或非对映体的立体化学分析。特别是,它允许测量有机合成分子的对映体纯度,或确定诸如脂肪酸甲酯(FAME)等生物分子中天然同位素的〜1H /〜2H分馏。到目前为止,通过使用统一采样(美国)获取溶质的NAD 2D光谱,并通过常规2D傅里叶变换(FT)处理,这可能导致中型分析物的测量时间较长或溶质浓度较低。在这里,我们证明了这种传统方法可以有利地被协方差(Cov)变换处理的非均匀采样(NUS)代替。这种原始的光谱重建显着提高了光谱分辨率,并减少了测量时间。将Cov应用于NUS数据需要在时域中为间接维引入正则化过程。通过测量2-乙基环氧乙烷的规模混合物的对映体过量和通过测定天然脂肪酸甲酯的非对映体过量,证明了Cov和NUS结合的分析潜力。将这两种有机化合物在多肽(聚(γ-苄基-L-谷氨酸))中间相中比对。在NAD 2D NMR光谱学的情况下,我们表明Cov和NUS方法与应用于美国数据的Cov相比,可将测量时间减少两倍。

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