Abstract

The possibility of synthesizing silatrane-containing polymers was investigated using three different synthetic methods: the formation of silatrane fragments from polymers with trialkoxysilyl groups, the copolymerization of silatrane-containing monomers, and the reaction of silatranes with functional copolymers. The obtained polymethacrylate copolymers were characterized using gel permeation chromatography, IR and NMR spectroscopy. It was shown that depending on the synthesis scheme used, polymers were obtained in the form of three-dimensional structures or soluble products. It was established that the molecular weight of the synthesized polymers depended significantly on both the content of silatrane fragments and the synthesis technique used. It was shown that the modification of linear carboxyl-containing copolymers by silatranes allows the synthesis of high-molecular polymers with a high content of silatrane fragments. For the synthesized polymers, thermal properties were investigated, and the hydrophobicity of the surface of polymer films was also evaluated. It was found that all the studied polymers did not have clear melting and crystallization temperatures. The polymers were stable in an inert atmosphere up to 270-280 °C, whereas in air they decomposed at lower temperatures with the restructuring of the macromolecular skeleton and the formation of highly heat-resistant silicone structures. An increase in the content of silatrane moieties in the copolymers led to an increase in the hydrophilicity of polymers.

Highlights

  • Исследована возможность проведения синтеза силатрансодержащих полимеров с использованием трех различных синтетических методик: образование силатрановых фрагментов из полимеров с триалкоксисилильными группами, сополимеризация силатрансодержащих мономеров и взаимодействие реакционноспособных силатранов с функциональными сополимерами

  • It was shown that depending on the synthesis scheme used, polymers were obtained in the form of three-dimensional structures or soluble products

  • It was established that the molecular weight of the synthesized polymers depended significantly on both the content of silatrane fragments and the synthesis technique used

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Summary

СИЛАТРАНСОДЕРЖАЩИЕ ПОЛИМЕТАКРИЛАТЫ

Исследована возможность проведения синтеза силатрансодержащих полимеров с использованием трех различных синтетических методик: образование силатрановых фрагментов из полимеров с триалкоксисилильными группами, сополимеризация силатрансодержащих мономеров и взаимодействие реакционноспособных силатранов с функциональными сополимерами. Что в зависимости от используемой схемы синтеза полимеры были получены в виде частично сшитых или растворимых продуктов. Установлено, что молекулярная масса синтезированных полимеров существенно зависела как от содержания в них силатрановых фрагментов, так и от используемой методики синтеза. It was established that the molecular weight of the synthesized polymers depended significantly on both the content of silatrane fragments and the synthesis technique used. It was shown that the modification of linear carboxyl-containing copolymers by silatranes allows the synthesis of high-molecular polymers with a high content of silatrane fragments. В то же время можно ожидать, что введение силатранового фрагмента в полимеры позволит получить новые биологически активные полимерные системы, а исследование взаимосвязи свойств этих систем и особенностей строения полимеров сделает возможным получение макромолекулярных систем с заданными физико-химическими и биоактивными свойствами. Расширению экспериментального материала в области силатрансодержащих полимеров и посвящена данная работа

Экспериментальная часть
Силатрансодержащие полиметакрилаты
Результаты и их обсуждение
Findings
Схема синтеза
Full Text
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