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核磁共振氢谱第31部分:二甲基亚砜溶剂中酰胺的氢化学位移

1H NMR spectra part 31: 1H chemical shifts of amides in DMSO solvent.

作者信息

Abraham Raymond J, Griffiths Lee, Perez Manuel

机构信息

The Chemistry Department, University of Liverpool, Crown St., Liverpool, L69 7ZD, UK.

出版信息

Magn Reson Chem. 2014 Jul;52(7):395-408. doi: 10.1002/mrc.4079. Epub 2014 May 14.

Abstract

The (1)H chemical shifts of 48 amides in DMSO solvent are assigned and presented. The solvent shifts Δδ (DMSO-CDCl3 ) are large (1-2 ppm) for the NH protons but smaller and negative (-0.1 to -0.2 ppm) for close range protons. A selection of the observed solvent shifts is compared with calculated shifts from the present model and from GIAO calculations. Those for the NH protons agree with both calculations, but other solvent shifts such as Δδ(CHO) are not well reproduced by the GIAO calculations. The (1)H chemical shifts of the amides in DMSO were analysed using a functional approach for near ( ≤ 3 bonds removed) protons and the electric field, magnetic anisotropy and steric effect of the amide group for more distant protons. The chemical shifts of the NH protons of acetanilide and benzamide vary linearly with the π density on the αN and βC atoms, respectively. The C=O anisotropy and steric effect are in general little changed from the values in CDCl3. The effects of substituents F, Cl, Me on the NH proton shifts are reproduced. The electric field coefficient for the protons in DMSO is 90% of that in CDCl3. There is no steric effect of the C=O oxygen on the NH proton in an NH…O=C hydrogen bond. The observed deshielding is due to the electric field effect. The calculated chemical shifts agree well with the observed shifts (RMS error of 0.106 ppm for the data set of 257 entries).

摘要

给出并指定了48种酰胺在二甲基亚砜(DMSO)溶剂中的¹H化学位移。NH质子的溶剂位移Δδ(DMSO - CDCl₃)较大(1 - 2 ppm),但近距离质子的溶剂位移较小且为负(-0.1至-0.2 ppm)。将部分观察到的溶剂位移与本模型以及GIAO计算得出的位移进行了比较。NH质子的位移与两种计算结果均相符,但其他溶剂位移,如Δδ(CHO),GIAO计算无法很好地重现。使用功能方法分析了DMSO中酰胺的¹H化学位移,对于近距离(≤去除3个键)质子,以及对于更远距离质子,分析了酰胺基团的电场、磁各向异性和空间效应。乙酰苯胺和苯甲酰胺的NH质子化学位移分别与αN和βC原子上的π电子密度呈线性变化。C = O的各向异性和空间效应通常与CDCl₃中的值变化不大。重现了取代基F、Cl、Me对NH质子位移的影响。DMSO中质子的电场系数是CDCl₃中的90%。在NH…O = C氢键中,C = O氧对NH质子没有空间效应。观察到的去屏蔽是由于电场效应。计算得到的化学位移与观察到的位移吻合良好(257个条目的数据集的均方根误差为0.106 ppm)。

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