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1H-NMR作为含酚天然产物和模型化合物分子内和分子间氢键的结构分析工具。

1H-NMR as a structural and analytical tool of intra- and intermolecular hydrogen bonds of phenol-containing natural products and model compounds.

作者信息

Charisiadis Pantelis, Kontogianni Vassiliki G, Tsiafoulis Constantinos G, Tzakos Andreas G, Siskos Michael, Gerothanassis Ioannis P

机构信息

Section of Organic Chemistry & Biochemistry, Department of Chemistry, University of Ioannina, Ioannina GR-45110, Greece.

NMR Center, University of Ioannina, Ioannina GR-45110, Greece.

出版信息

Molecules. 2014 Sep 2;19(9):13643-82. doi: 10.3390/molecules190913643.

Abstract

Experimental parameters that influence the resolution of 1H-NMR phenol OH signals are critically evaluated with emphasis on the effects of pH, temperature and nature of the solvents. Extremely sharp peaks (Δν1/2≤2 Hz) can be obtained under optimized experimental conditions which allow the application of 1H-13C HMBC-NMR experiments to reveal long range coupling constants of hydroxyl protons and, thus, to provide unequivocal assignment of the OH signals even in cases of complex polyphenol natural products. Intramolecular and intermolecular hydrogen bonds have a very significant effect on 1H OH chemical shifts which cover a region from 4.5 up to 19 ppm. Solvent effects on -OH proton chemical shifts, temperature coefficients (Δδ/ΔT), OH diffusion coefficients, and nJ(13C, O1H) coupling constants are evaluated as indicators of hydrogen bonding and solvation state of phenol -OH groups. Accurate 1H chemical shifts of the OH groups can be calculated using a combination of DFT and discrete solute-solvent hydrogen bond interaction at relatively inexpensive levels of theory, namely, DFT/B3LYP/6-311++G (2d,p). Excellent correlations between experimental 1H chemical shifts and those calculated at the ab initio level can provide a method of primary interest in order to obtain structural and conformational description of solute-solvent interactions at a molecular level. The use of the high resolution phenol hydroxyl group 1H-NMR spectral region provides a general method for the analysis of complex plant extracts without the need for the isolation of the individual components.

摘要

对影响1H-NMR酚羟基信号分辨率的实验参数进行了严格评估,重点关注pH值、温度和溶剂性质的影响。在优化的实验条件下可以获得极其尖锐的峰(Δν1/2≤2 Hz),这使得1H-13C HMBC-NMR实验得以应用,以揭示羟基质子的远程耦合常数,从而即使在复杂的多酚天然产物情况下也能明确确定OH信号。分子内和分子间氢键对1H OH化学位移有非常显著的影响,其范围从4.5到19 ppm。评估溶剂对-OH质子化学位移、温度系数(Δδ/ΔT)、OH扩散系数和nJ(13C, O1H)耦合常数的影响,作为酚-OH基团氢键和溶剂化状态的指标。OH基团的准确1H化学位移可以使用DFT和离散溶质-溶剂氢键相互作用在相对廉价的理论水平上进行计算,即DFT/B3LYP/6-311++G (2d,p)。实验1H化学位移与从头算水平计算的化学位移之间的良好相关性,可以提供一种主要的方法,以便在分子水平上获得溶质-溶剂相互作用的结构和构象描述。使用高分辨率酚羟基1H-NMR光谱区域提供了一种分析复杂植物提取物的通用方法,而无需分离单个成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e22/6271058/330ec062d779/molecules-19-13643-g001.jpg

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