Department of Chemistry, Faculty of Science, Cairo University, Giza, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2009 Nov;74(4):902-10. doi: 10.1016/j.saa.2009.08.042. Epub 2009 Aug 26.
Heterocyclic Schiff bases derived from 3-amino-1,2,4-triazole and different substituted aromatic aldehydes are prepared and subjected to (1)H NMR, (13)C NMR and mass spectral analyses. (1)H NMR spectra in DMSO exhibit a sharp singlet within the 9.35-8.90ppm region which corresponds to the azomethine proton. The position of this signal is largely dependent on the nature of the substituents on the benzal moiety. It is observed that the shape, position and the integration value of the signal of the aromatic proton of the triazole ring ((5)C) are clearly affected by the rate of exchange, relaxation time, concentration of solution as well as the solvent used. (13)C NMR is taken as substantial support for the results reached from (1)H NMR studies. The mass spectral results are taken as a tool to confirm the structure of the investigated compounds. The base peak (100%), mostly the M-1 peak, indicates the facile loss of hydrogen radical. The fragmentation pattern of the unsubstituted Schiff base is taken as the general scheme. Differences in the other schemes result from the effect of the electronegativity of the substituents attached to the aromatic ring.
从 3-氨基-1,2,4-三唑和不同取代的芳香醛制备杂环席夫碱,并进行 (1)H NMR、(13)C NMR 和质谱分析。DMSO 中的 (1)H NMR 谱在 9.35-8.90ppm 区域内显示一个尖锐的单峰,对应于亚甲胺质子。该信号的位置在很大程度上取决于苯甲醛部分取代基的性质。观察到,三唑环 (5)C 的芳质子信号的形状、位置和积分值明显受到交换速率、弛豫时间、溶液浓度以及所用溶剂的影响。(13)C NMR 作为 (1)H NMR 研究结果的有力支持。质谱结果被用作确认所研究化合物结构的工具。基峰(100%),主要是 M-1 峰,表明氢自由基的容易丢失。未取代席夫碱的碎裂模式被作为一般方案。其他方案的差异来自于连接到芳环上的取代基的电负性的影响。