An Overview of Preparation for Different Azo Compounds

Shayma M. Ahmad, Zahraa S. Al-Taie, Mohammed H. Al-Mashhadani, Rana A.Hammza, Mulia Rahmansyah, Muna S. Bufaroosha, Emad Yousif
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Abstract

Azo compounds are a class of organic materials that have the group R-N=N-R' where the substitution group R and R' are aromatic or heterocyclic sides. The azo compounds have a variety of applications including dyes, pigments, and pharmaceuticals. The preparation and characterization of different azo compounds is an important area of research in organic synthesis. The azo compound synthesis typically involves the diazotization process for coupling between an aromatic amine and another aromatic compound containing an activating group such as -OH, -NH2, or -NR2. The reaction conditions must be carefully controlled to prevent side reactions, such as the formation of unwanted byproducts. Once synthesized, azo compounds can be characterized using a variety of techniques including UV-Vis spectroscopy, NMR spectroscopy, and mass spectrometry. UV-Vis spectroscopy is a commonly used technique for characterizing azo compounds. The absorption spectrum of an azo compound typically exhibits a strong absorption band in the visible region due to the delocalized π-electrons in the azo group. While in FTIR, the loss of the amine peak and showing a weak peak at about 1550 cm−1forthe (N=N) group, indicates the presence of Azo. The preparation and characterization of different azo compounds is a significant field of research in organic chemistry, which are applied as acid and base indicators, food coloring, optical switches, liquid crystal and in medicine. By carefully controlling the synthesis conditions and using a variety of characterization techniques, researchers can gain a better understanding of the properties and applications of these compounds.
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不同偶氮化合物的制备概述
偶氮化合物是一类有机材料,其基团为 R-N=N-R',其中取代基 R 和 R'为芳香族或杂环族。偶氮化合物有多种用途,包括染料、颜料和药物。不同偶氮化合物的制备和表征是有机合成的一个重要研究领域。偶氮化合物的合成通常涉及芳香胺与另一种含有活化基团(如 -OH、-NH2 或 -NR2 )的芳香族化合物偶联的重氮化过程。反应条件必须严格控制,以防止副反应的发生,如形成不需要的副产物。合成偶氮化合物后,可使用多种技术对其进行表征,包括紫外可见光谱、核磁共振光谱和质谱分析。紫外可见光谱法是表征偶氮化合物的常用技术。偶氮化合物的吸收光谱通常会在可见光区域显示出一条强烈的吸收带,这是由于偶氮基团中的π电子发生了分散。而在傅立叶变换红外光谱中,胺峰消失,并在约 1550 cm-1 处显示出(N=N)基团的弱峰,表明偶氮化合物的存在。不同偶氮化合物的制备和表征是有机化学研究的一个重要领域,它们可用作酸碱指示剂、食品着色剂、光学开关、液晶和医药。通过仔细控制合成条件和使用各种表征技术,研究人员可以更好地了解这些化合物的特性和应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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