Chemistry Department, Faculty of Science, Cairo University, Giza, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2011 Mar;78(3):1027-36. doi: 10.1016/j.saa.2010.12.037. Epub 2010 Dec 28.
Four novel azo compounds were synthesized; o-phenylazo- (C(14)H(13)N(3)O(2)) (I), p-bromo-o-phenylazo- (C(14)H(13)BrN(3)O(2)) (II), p-methoxy-o-phenaylazo- (C(15)H(16)N(3)O(3)) (III) and p-nitro-o-phenylazo-p-acetamidophenol (C(14)H(13)N(4)O(4)) (IV). These compounds were carefully investigated using elemental analyses, UV-vis, FT-IR, (1)H NMR and mass spectra. Also, the effects of p-substituents such as bromo, methoxy and nitro groups on the mass fragmentation pathways of these dyes were studied using Hammet's effects. This research aimed chiefly to threw lights on the structures-stability relationship of four novel newly prepared azo derivatives of p-acetoamidophenol. The data obtained referred to the variation of mass fragmentation pathways with the variation of p-substituent of these dyes which can be used in industry for various dyeing purposes. This variation is also correlated and verified by molecular orbital calculations which were done on ionic forms of these dyes using semi empirical PM3 program. The biological activities of these dyes were also investigated and its structure relationship was correlated.
四种新型偶氮化合物被合成;邻苯偶氮-(C(14)H(13)N(3)O(2))(I)、对溴邻苯偶氮-(C(14)H(13)BrN(3)O(2))(II)、对甲氧基邻苯偶氮-(C(15)H(16)N(3)O(3))(III)和对硝基邻苯偶氮对乙酰氨基酚(C(14)H(13)N(4)O(4))(IV)。这些化合物通过元素分析、UV-vis、FT-IR、(1)H NMR 和质谱进行了仔细的研究。此外,还使用哈米特效应研究了取代基(如溴、甲氧基和硝基)对这些染料的质谱碎裂途径的影响。这项研究主要旨在阐明四个新制备的对乙酰氨基酚偶氮衍生物的结构-稳定性关系。所获得的数据涉及到这些染料的质谱碎裂途径随取代基变化的变化,这些变化可用于各种染色目的的工业。这种变化也通过使用半经验 PM3 程序对这些染料的离子形式进行的分子轨道计算进行了关联和验证。还研究了这些染料的生物活性,并与其结构关系进行了关联。