共轭亚油酸甲酯几何异构体羟基二次氧化产物1H和13C NMR化学位移的DFT计算:溶液中的结构和核磁共振赋值的修正。

IF 1.9 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Themistoklis Venianakis, Michael G. Siskos, Ioannis P. Gerothanassis
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引用次数: 0

摘要

介绍了共轭亚麻酸甲酯的各种几何异构体羟基二次氧化产物的1H和13C NMR化学位移的详细DFT研究。中心二烯醇OH部分的模型化合物确定了几个低能构象,这些构象实际上与所使用的各种官能团和基集无关。这极大地促进了共轭亚麻酸甲酯几何异构体的最小化过程。经过玻尔兹曼分析,用Gibbs低能DFT优化构象的计算化学位移可以很准确地再现文献实验1H和13C化学位移的几个规律。甲基CH-OH的δ(13C)和δ(1H)对相邻双键的反式/反式和顺式/反式几何异构具有较高的诊断性。共轭体系末端双键附近- ch2 -基团的δ(13C)强烈依赖于该键的顺/反几何异构,因此在结构分析中可能是重要的。在文献报道的歧义烯烃碳共振分配已解决。计算δ(1H)和δ(13C)可用于共轭亚油酸及其酯衍生物的几何异构体识别和羟基衍生物的结构和构象解析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

DFT Calculations of 1H and 13C NMR Chemical Shifts of Hydroxy Secondary Oxidation Products of Geometric Isomers of Conjugated Linoleic Acid Methyl Esters: Structures in Solution and Revision of NMR Assignments

DFT Calculations of 1H and 13C NMR Chemical Shifts of Hydroxy Secondary Oxidation Products of Geometric Isomers of Conjugated Linoleic Acid Methyl Esters: Structures in Solution and Revision of NMR Assignments

Detailed DFT studies of 1H and 13C NMR chemical shifts of hydroxy secondary oxidation products of various geometric isomers of conjugated linolenic acids methyl esters are presented. Several low energy conformers were identified for model compounds of the central dienenol OH moiety, which were found to be practically independent on the various functionals and basis sets used. This greatly facilitated the minimization process of the geometric isomers of conjugated linolenic acids methyl esters. Several regularities of the literature experimental 1H and 13C chemical shifts were reproduced very accurately with the computational chemical shifts of the Gibbs low energy DFT optimized conformers, after a Boltzmann analysis. δ(13C) and δ(1H) of the methine CH-OH group are highly diagnostic for the trans/trans and cis/trans geometric isomerism of the adjacent double bond. δ(13C) of the –CH2– group adjacent to the terminal double bond of the conjugated system strongly depend on the cis/trans geometric isomerism of this bond and, thus, could be of importance in structural analysis. Ambiguities in the reported literature resonance assignments of olefinic carbons had been resolved. Computational δ(1H) and δ(13C) can be utilized for the identification of geometric isomerism and structural and conformational elucidation of hydroxy derivatives of conjugated linoleic acids and their ester derivatives.

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来源期刊
CiteScore
4.70
自引率
10.00%
发文量
99
审稿时长
1 months
期刊介绍: MRC is devoted to the rapid publication of papers which are concerned with the development of magnetic resonance techniques, or in which the application of such techniques plays a pivotal part. Contributions from scientists working in all areas of NMR, ESR and NQR are invited, and papers describing applications in all branches of chemistry, structural biology and materials chemistry are published. The journal is of particular interest not only to scientists working in academic research, but also those working in commercial organisations who need to keep up-to-date with the latest practical applications of magnetic resonance techniques.
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