波谱学杂志 ›› 1989, Vol. 6 ›› Issue (3): 326-336.

• 研究论文 • 上一篇    下一篇

1H NMR芳烃质子鉴定α-卤代桂皮酰胺类化合物的构型

沈其丰1, 王书玉2   

  1. 1. 北京农业大学;
    2. 北京医科大学药化教研组
  • 收稿日期:1988-07-14 修回日期:1988-10-17 出版日期:1989-09-05 发布日期:2018-01-22

THE IDENTIFICATION OF CONFIGURATION OF α-HALOCINNAMAMIDES THROUGH 1H NMR OF AROMATIC PROTONS

Shen Qifeng1, Wang Shuyu2   

  1. 1. Beijing Agricultural University, Beijing;
    2. School of Pharmaceutical Sciences, Beijing Medical University, Beijing
  • Received:1988-07-14 Revised:1988-10-17 Online:1989-09-05 Published:2018-01-22

摘要: 桂皮酰胺类化合物的Z或E-构型,影响其对中枢神经的药理作用(兴奋或抑制),根据NMR测定结果,该类烯氢未取代的化合物,可以用两个烯氢的偶合常数大小来鉴定其构型(JE>JZ);α-卤代的桂皮酰胺,可根据β-烯氢的化学位移(δH(Z)>δH(E),差别大于1 ppm)和NH的化学位移(δH(Z)>δH(E))来区分[10].但对α-卤代的桂皮酰哌啶类化合物,其哌啶环的氮上无氢,两种构型的β-烯氢的化学位移的差别也不大,可以利用C=O与β-烯氢的偶合常数3JCH来区别.但3JCH不易测定,干扰因素也多.有些化合物可根据N上取代基的大小,导致C=O-N键和芳环自由转动程度不同及优势构象各异、面角改变等来鉴定构型(Z或E).综合和比较这些化合物的1H谱发现α-卤代桂皮酰胺类化合物,不论酰胺氮上带有何种取代基,苯环上取代基的种类与数目,芳烃质子的化学位移与峰形,Z型和E型有显著的不同,特别是α-位为较大的溴原子取代时,这种差别更明显,可用于鉴定这些化合物的构型.

关键词: 核磁共振, α-卤代桂皮酰胺, 化学位移, 偶合常数, 模型

Abstract: The pharmacological results indicate that the N-monoalkyl substituted (E)-and (Z)-α-halocinnamamidcs display different actions on the central nervous system (CNS-depressant or CNS-stimulant activity). According to the results determined by NMR, the difference in the coupling constants of two olefinic protons (JE > JZ) between the two geometrical forms can be used for isomeric assignment for the unsubstituted compounds on the olefinic protons. The value of chemical shifts of β-olefinic H, (δH (Z) > δH (E)), and NH (δH (Z) > δH (E)), the difference of which are more than 1 ppm, can be used to distinguish the configuration of α-halocinnamamides[10]. The coupling constants and β-olefinic proton can be utilized to distinguish α-halocinnamoyl piperidines, because there is no proton on the nitrogen of piperidine ring and the chemical shift difference of β-olefinic H between Z and E form is very small. Because determination is not very easy and has so many interfering factors, these piperidine Z or E compounds can be distinguished by conformation variation of piperidine[11].
Comparing the aromatic parts of 1H-NMR spectra of the whole series of α-halocinnamamides, we discovered that the chemical shifts and spectral patterns of aromatic protons are very different between Z and E, due to the difference in stcric-hindrance. Thus this method can be used to distinguish Z or E configuration of α-halocinnamamides.

Key words: NMR, α-halocinnamamidc, Chemical shift, Coupling constant, Configuration