The Chemistry Department, University of Liverpool, Crown St, Liverpool, L69 7ZD, UK.
Magn Reson Chem. 2013 Mar;51(3):143-55. doi: 10.1002/mrc.3920. Epub 2013 Jan 25.
The (1)H spectra of 37 amides in CDCl(3) solvent were analysed and the chemical shifts obtained. The molecular geometries and conformational analysis of these amides were considered in detail. The NMR spectral assignments are of interest, e.g. the assignments of the formamide NH(2) protons reverse in going from CDCl(3) to more polar solvents. The substituent chemical shifts of the amide group in both aliphatic and aromatic amides were analysed using an approach based on neural network data for near (≤3 bonds removed) protons and the electric field, magnetic anisotropy, steric and for aromatic systems π effects of the amide group for more distant protons. The electric field is calculated from the partial atomic charges on the N.C═O atoms of the amide group. The magnetic anisotropy of the carbonyl group was reproduced with the asymmetric magnetic anisotropy acting at the midpoint of the carbonyl bond. The values of the anisotropies Δχ(parl) and Δχ(perp) were for the aliphatic amides 10.53 and -23.67 (×10(-6) Å(3)/molecule) and for the aromatic amides 2.12 and -10.43 (×10(-6) Å(3)/molecule). The nitrogen anisotropy was 7.62 (×10(-6) Å(3)/molecule). These values are compared with previous literature values. The (1)H chemical shifts were calculated from the semi-empirical approach and also by gauge-independent atomic orbital calculations with the density functional theory method and B3LYP/6-31G(++) (d,p) basis set. The semi-empirical approach gave good agreement with root mean square error of 0.081 ppm for the data set of 280 entries. The gauge-independent atomic orbital approach was generally acceptable, but significant errors (ca. 1 ppm) were found for the NH and CHO protons and also for some other protons.
在 CDCl3溶剂中分析了 37 种酰胺的 (1)H 谱,并得到了化学位移。详细考虑了这些酰胺的分子几何形状和构象分析。NMR 谱的分配很有趣,例如,从 CDCl3到更极性的溶剂,甲酰胺 NH2质子的分配逆转。使用基于神经网络数据的方法分析了脂肪族和芳香族酰胺中酰胺基团的取代基化学位移,该方法适用于近(≤3 键去除)质子和电场、磁各向异性、空间位阻以及对于更远的质子的酰胺基团的π效应。电场是根据酰胺基团的 N.C═O 原子上的部分原子电荷计算得出的。羰基的磁各向异性通过作用在羰基键中点的不对称磁各向异性来再现。脂肪族酰胺的各向异性值 Δχ(parl)和 Δχ(perp)分别为 10.53 和-23.67(×10-6 Å3/分子),芳香族酰胺的各向异性值分别为 2.12 和-10.43(×10-6 Å3/分子)。氮各向异性为 7.62(×10-6 Å3/分子)。将这些值与以前的文献值进行了比较。通过半经验方法和基于密度泛函理论方法的无规轨道独立原子计算(B3LYP/6-31G(++)(d,p)基组)计算了 (1)H 化学位移。半经验方法与 RMS 误差为 0.081 ppm 的 280 个条目数据集吻合良好。无规轨道独立原子方法通常是可以接受的,但对于 NH 和 CHO 质子以及其他一些质子,存在显著误差(约 1 ppm)。