Block-сopolyesters based on 4,4ʹ-dioxydiphenylpropane bischloroformate.
https://doi.org/10.1234/2221-7789-2025-3-58-61
EDN: NFTHHQ
Abstract
Using high-temperature and low- temperature polycondensation methods, block copolyesters based on oligoesters and bischloroformate were synthezized and their properties were studied. The dependence of properties on the composition and structure of oligoesters is shown. An increase in the content of oligoetherformal leads to an increase in the stability of block copolyesters in alkaline environments.
About the Authors
Gennady B. ShustovRussian Federation
Professor of the Department of Biochemistry and Chemical Ecology of the Institute of Mathematics and Natural Sciences, Doctor of Chemistry, Professor.
Konstantin B. Temirayev
Russian Federation
Doctor of Chemistry, Associate Professor of the Department.
Nurali I. Mashukov
Russian Federation
Scientific Director of the Department of Biochemistry and Chemical Ecology of the Institute of Mathematics and Natural Sciences, Doctor of Chemistry, Professor.
Larisa G. Grineva
Russian Federation
Associate Professor of the Department of Biochemistry and Chemical Ecology of the Institute of Mathematics and Natural Sciences, Candidate of Chemical Sciences, Associate Professor
Ruslan A. Shetov
Russian Federation
Associate Professor of the Department of Biochemistry and Chemical Ecology at the Institute of Mathematics and Natural Sciences, Candidate of Physical and Mathematical Sciences, Associate Professor.
Elina V. Khakyasheva
Russian Federation
Senior Researcher at the Center for Advanced Materials and Additive Technologies.
References
1. Ношей А., Мак-Грат Дж. Блок-сополимеры. М.: Мир, 1980. 478 с.
2. Бюллер К.-У. Тепло- и термостойкие полимеры. М.: Химия, 1984. 1056 с.
3. Виноградова С.В., Васнев В.А. Поликонденсационные процессы и полимеры. М.: Наука, 2000. 373 с.
4. Темираев К.Б. Синтез и свойства полиэфиров, полиформалей и блок-сополимеров на их основе: дис. … д-ра хим. наук. Нальчик, 2000. 324 с.
5. Микитаев А.К., Коршак В.В., Шустов Г.Б. Синтез и свойства галоидсодержащих полиарилатсульфоновых блок-сополимеров // Высокомолекулярные соединения А. 1982. Т. 24, № 12. С. 2556–2562.
6. Смирнова О.В., Ерофеева С.Б. Поликарбонаты. М.: Химия, 1975. 288 с.
7. Хасбулатова З.С., Асуева Л.А., Насурова М.А., Шустов Г.Б., Микитаев А.К. Ароматические полиформали //Пластические массы. 2008. № 8. С. 31–34.
8. Болотина Л.М., Чеботарев В.П. Развитие исследований в области химии и технологии ароматических полисульфонов // Пластические массы. 2003. № 11. С. 3–9.
9. Темираев К.Б., Микитаев А.К., Часыгова А.Г. Ароматические олигоформали // Олигомеры2000: тезисы докладов 7-й Международной конференции. Москва-Пермь-Черноголовка, 2000. С. 111.
10. Электрические свойства полимеров / под ред. Б.И. Сажина. Л.: Химия, 1970. 376 с.
Review
For citations:
Shustov G.B., Temirayev K.B., Mashukov N.I., Grineva L.G., Shetov R.A., Khakyasheva E.V. Block-сopolyesters based on 4,4ʹ-dioxydiphenylpropane bischloroformate. Proceedings of the Kabardino-Balkarian State University. 2025;15(3):58-61. (In Russ.) https://doi.org/10.1234/2221-7789-2025-3-58-61. EDN: NFTHHQ


