Arenediazonium sulfonates: synthesis, comparison of structural and physicochemical properties

A. Kassanova, M.T. Yestayeva, M. O. Turtubayeva
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Abstract

Aromatic diazonium salts are important building blocks in organic synthesis. The present review is concerned with such aromatic diazonium sulfonates as tosylates, dodecylbenzenesulfonates, triflates, camphorsulfonates, silica sulfates. The first part of the review provides information on the synthesis and application of these diazonium salts. It is shown that these diazonium compounds are easily synthesized by diazotization of anilines with sodium nitrite or alkyl nitrites in the presence of corresponding sulfonic acids with high yields. These diazonium salts have found wide application in the synthesis of aromatic azides, halides, triazenes, azo dyes, stilbenes, biaryls, etc. The second part of the article presents information on the comparison of the results of X-ray analysis, infrared spectroscopy and thermal analysis. The structure of diazonium sulfonate salts corresponds to the structure of classical diazonium salts (chlorides, sulfates, tetrafluoroborates). A significant difference between arenediazonium sulfonates and other diazonium salts is their explosion safety and stability in an individual form. Arenediazonium tosylates, triflates and camphorasulfonates are easily soluble both in water and in polar organic solvents. Arenediazonium dodecylbenzenesulfonates are soluble in nonpolar organic media. These features of sulfonate salts are paramount for distinguishing characteristics of the effect of the acid anion on the stability, solubility and reactivity of diazonium salts.
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氨基重氮磺酸盐:合成、结构及理化性质比较
芳香族重氮盐是有机合成的重要组成部分。本文综述了芳香重氮磺酸盐,如甲磺酸盐、十二烷基苯磺酸盐、三氟磺酸盐、樟脑磺酸盐、二氧化硅磺酸盐。第一部分综述了重氮盐的合成和应用情况。结果表明,在相应的磺酸存在下,苯胺与亚硝酸钠或亚硝酸酯进行重氮化反应,容易合成这些重氮化合物,收率高。这些重氮盐广泛应用于芳香族叠氮化物、卤化物、三氮烯、偶氮染料、二苯乙烯、双芳基等的合成。文章的第二部分介绍了x射线分析、红外光谱分析和热分析结果的比较。重氮磺酸盐的结构与经典重氮盐(氯化物、硫酸盐、四氟硼酸盐)的结构相对应。芳胺重氮磺酸盐与其他重氮盐的显著区别在于它们在单个形式下的爆炸安全性和稳定性。甲苯磺酸甲酯、三氟磺酸甲酯和樟脑磺酸甲酯极易溶于水和极性有机溶剂。氨基重氮十二烷基苯磺酸盐可溶于非极性有机介质。磺酸盐的这些特征对于区分酸性阴离子对重氮盐的稳定性、溶解度和反应性的影响是至关重要的。
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