Арил- и гетероарилдиазоний сульфонаты - удобные строительные блоки органического синтеза = Aryl- and heteroaryldiazonium sulfonates - convenient organic synthesis building blocks / Е. А. Краснокутская, В. Д. Филимонов, А. Н. Санжиев

Main Author: Краснокутская, Е. А., химик-органик, профессор Томского политехнического университета, доктор химических наук, 1966-, Елена АлександровнаCoauthor: Филимонов, В. Д., химик, профессор Томского политехнического университета, доктор химических наук, 1945-, Виктор Дмитриевич;Санжиев, А. Н., химик, младший научный сотрудник Томского политехнического университета, 1993-, Алдар НиколаевичCorporate Author (Secondary): Национальный исследовательский Томский политехнический университет, Инженерная школа новых производственных технологий, Научно-образовательный центр Н. М. КижнераLanguage: русский.Country: Россия.Abstract: A new, previously unknown series of aromatic and heteroaromatic diazonium sulfonates (tosylates, triflates, camphorsulfonates) has been developed. All synthesized diazonium salts are safe during storage, have high solubility both in water and in organic polar and low-polarity solvents. The features of the molecular structure, the chemical properties of diazonium salts have been established. Based on the method of isothermal flow calorimetry, a new approach for the quantitative assessment of the storage stability of aromatic and heteroaromatic diazonium salts has been developed..Bibliography: [Библиогр.: с. 134 (5 назв.)].Subject: электронный ресурс | труды учёных ТПУ | сульфонаты | строительные блоки | органический синтез | ароматические соли | соли диазония | калориметрия | гетероароматические соли Online Resources:Click here to access online
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[Библиогр.: с. 134 (5 назв.)]

A new, previously unknown series of aromatic and heteroaromatic diazonium sulfonates (tosylates, triflates, camphorsulfonates) has been developed. All synthesized diazonium salts are safe during storage, have high solubility both in water and in organic polar and low-polarity solvents. The features of the molecular structure, the chemical properties of diazonium salts have been established. Based on the method of isothermal flow calorimetry, a new approach for the quantitative assessment of the storage stability of aromatic and heteroaromatic diazonium salts has been developed.

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