首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Combined Use of Complete Lineshape Analysis of 1D Spectra Subjected to Reference Deconvolution and Linear Prediction, 2D-EXSY Spectra and a Double Fitting Method for the Study of Chemical Exchange. Application to an Eight-Site Exchange System
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Combined Use of Complete Lineshape Analysis of 1D Spectra Subjected to Reference Deconvolution and Linear Prediction, 2D-EXSY Spectra and a Double Fitting Method for the Study of Chemical Exchange. Application to an Eight-Site Exchange System

机译:结合参考反卷积和线性预测的一维光谱的完整线形分析,2D-EXSY光谱以及用于化学交换研究的双重拟合方法的组合使用。在八站点交换系统中的应用

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摘要

Obtaining unknown MR parameters from experimental spectra of exchanging systems is, from a mathematical point of view, associated with the solution of an inverse problem. Inverse problems are usually solved by iterative procedures and calculations may not always converge and the solutions are rarely unique. To attain reliable rate constants we adopted the following experimental-computational scheme: acquirement of perfect MR lineshapes for complete lineshape analysis (CLSA) by elimination of undesirable effects due to magnetic field inhomogeneity through reference deconvolution and linear prediction; the combined use of 2D exchange spectroscopy (2D-EXSY) and 1D CLSA for the determination of the rotation rate constants; and application of the double fit method, which is based on the knowledge that the exchange parameters depend on thermally activated processes. In this paper, we demonstrate the advantages of this combined approach for the determination of precise and unique sets of rate constants and activation parameters. We applied this scheme to study hindered rotations in #alpha#-[bis(dimethylamino)methylene)-#beta#-oxophenylacetonitrile. This compound is an example of exchange between eight potential sites. Activation parameters of the eight rotations in that molecule were calculated and are discussed.
机译:从交换系统的实验光谱中获得未知的MR参数,从数学的角度来看,与反问题的解决有关。反问题通常通过迭代过程解决,并且计算可能不会总是收敛,并且解决方案很少是唯一的。为了获得可靠的速率常数,我们采用了以下实验计算方案:通过参考去卷积和线性预测,消除由磁场不均匀性引起的不良影响,获得用于完整线形分析(CLSA)的完美MR线形;结合使用2D交换光谱法(2D-EXSY)和1D CLSA来确定转速常数;双拟合方法的应用和应用,该方法基于交换参数取决于热激活过程的知识。在本文中,我们演示了这种组合方法在确定速率常数和激活参数的精确且唯一集合方面的优势。我们应用此方案来研究#alpha#-[双(二甲基氨基)亚甲基)-#beta#-氧苯基乙腈中的受阻旋转。该化合物是八个潜在位点之间交换的一个例子。计算并讨论了该分子中八次旋转的激活参数。

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