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首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Substituent effects on H-1 and C-13 NMR chemical shifts in alpha-monosubstituted ethyl acetates: principal component analysis and H-1 chemical shift calculations
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Substituent effects on H-1 and C-13 NMR chemical shifts in alpha-monosubstituted ethyl acetates: principal component analysis and H-1 chemical shift calculations

机译:取代基对α-单取代乙酸乙酯中H-1和C-13 NMR化学位移的影响:主成分分析和H-1化学位移计算

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摘要

A principal component analysis is applied to a-monosubstituted ethyl acetates (YCH2CO2Et), where the observed chemical shifts for the a-carbon atom, the carbonyl carbon, and the a-hydrogen atoms are correlated with theoretically derived molecular properties, i.e. the partial charges on the same atoms and the electronegativity and hardness. The effects on H-1 and C-13 NMR chemical shifts of 12 alpha-substituents: F, Cl, Br, I, OMe, OEt, SMe, SEt, NMe2, NEt2, Me, and Et were investigated. A strong grouping of the same heteroatom substituents is observed, showing the chemical shift dependence on the type of substituent. Halogenated compounds represent a heterogeneous group, where the large effect of the fluorine substituent is similar to that of the oxygen derivatives (OMe and OEt). Theoretical calculations show that fluorine and oxygen derivatives exhibit similar energy curves with respect to the Y-C-C=O dihedral angle and the same conformational equilibrium between cis and trans rotamers. Sulfur, neutral substituents and halogen derivatives (Cl, Br and I) give an equilibrium between cis and gauche rotamers, with a predominance of the gauche conformers. The rotational equilibrium in solution was confirmed by H-1 chemical shift calculations utilizing the CHARGE 7H program. The calculated a-hydrogen atom chemical shifts are in very good agreement with the measured values. Copyright (C) 2002 John Wiley Sons, Ltd. [References: 29]
机译:主成分分析应用于a-单取代的乙酸乙酯(YCH2CO2Et),其中观察到的a-碳原子,羰基碳和a-氢原子的化学位移与理论推导的分子特性(即部分电荷)相关在相同原子上的电负性和硬度。研究了F,Cl,Br,I,OMe,OEt,SMe,SEt,NMe2,NEt2,Me和Et等12种α-取代基对H-1和C-13 NMR化学位移的影响。观察到相同杂原子取代基的强烈分组,表明化学位移对取代基类型的依赖性。卤代化合物代表一个异质基团,其中氟取代基的大作用类似于氧衍生物(OMe和OEt)。理论计算表明,氟和氧衍生物相对于Y-C-C = O二面角具有相似的能量曲线,并且在顺式和反式旋转异构体之间具有相同的构象平衡。硫,中性取代基和卤素衍生物(Cl,Br和I)在顺式和薄纱旋转异构体之间保持平衡,并以薄纱构象异构体为主。溶液中的旋转平衡通过使用CHARGE 7H程序进行的H-1化学位移计算确定。计算出的α-氢原子化学位移与测量值非常吻合。版权所有(C)2002 John Wiley Sons,Ltd. [参考:29]

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