超声辐射与常规方法合成具有生物活性的4-芳基胺-2,4-二氢- 3h -1,2,4-三唑-3- 1化合物、方法比较及结构解析

İ. Doğan, B. Kahveci
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引用次数: 0

摘要

今天,用于治疗疾病的大多数药物都是通过合成获得的。大部分化合物具有杂环结构。因此,新的杂环化合物的合成一直并将继续吸引着科学家。已知含三唑骨架的化合物在杂环中占有重要地位。4-氨基-三唑类化合物的反应,特别是与芳香醛的反应,早已为人所知,这种反应是通过传统的加热方法进行的。然而,替代这些传统方法的加热方法的发展最近也进行了研究。其中最重要的是微波法有机合成,并得到了广泛的应用。最近在有机合成中使用的另一种替代方法是利用超声波辐射实现有机合成反应。超声辅助有机合成是一种环保、现代、经济的加速反应方法。本研究采用超声辐射法确定了该反应的最佳条件,并与经典方法进行了比较。为此,第一步采用Pinner法合成了亚胺投入剂。该亚胺投资商与氨基甲酸乙酯反应生成相应的腙。然后将得到的腙衍生物与水合肼反应,合成4-氨基-1,2,4-三唑衍生物。在最后的反应步骤中,通过常规和新颖的方法(超声辐射)将该氨基化合物与3-溴-4-氟苯甲醛相互作用,得到目标亚胺化合物。新化合物的化学结构将通过诸如Hand - C-NMR和IR等光谱方法来确定。结果比较了常规法和超声法的反应时间、收率和纯度。我们发现超声波辐射法更有优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis of Biologically Active 4-Arylideneamino-2,4-dihydro-3H-1,2,4-triazol-3-one Compound by Ultrasonic Radiation and Conventional Method, Comparison of Methods and Elucidation of Structure
Today, the majority of the drugs used in the treatment of diseases are obtained by synthesis. A large proportion of the compounds have obtained heterocyclic structure. Therefore, synthesis of new heterocyclic compounds has always attracted and continues to attract scientist. It is known that compounds bearing triazole skeleton in the heterocyclic have an important place. The reactions of 4-amino-triazole compounds, especially with aromatic aldehydes, have been known for a long time and this reaction is carried out by conventional heating methods. However, the development of alternative heating methods to these conventional methods has also recently been studied. One of the most important of these is organic synthesis by microwave method and it is widely used. Another alternative method that has recently been used in organic synthesis is the realization of organic synthesis reactions with ultrasonic radiation. Ultrasound-assisted organic synthesis is an environmentally friendly, modern and economical method used to accelerate reactions. In this study, optimum conditions were determined for this reaction by using ultrasonic radiation method and the results were compared with the classical method. For this purpose, in the first step iminoester was synthesized by using Pinner method. The reaction of this iminoester with ethylcarbazate gave the corresponding hydrazone. Then the reaction of this obtained hydrazone derivative with hydrazine hydrate, the 4-amino-1,2,4-triazole derivative compound was synthesized. In the final reaction step, the interaction of this amino compound with 3-bromo-4-fluorobenzaldehyde was carried out by conventional and novel method (ultrasonic radiation) to obtain the targeted imine compound. The chemical structure of the new compound will be determined by spectroscopic methods such as Hand C-NMR and IR. The results compared in terms of reaction time, yield and purity between conventional and ultrasonic method. And we found that the ultrasonic radiation method is much more advantageous.
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