Synthesis of Copolymer from 1,3,5-Trioxane and e-Caprolactone Catalysed by Treated Bentonite as Eco-Catalyst
Date
2023-02-28
Journal Title
Journal ISSN
Volume Title
Publisher
Видавництво Львівської політехніки
Lviv Politechnic Publishing House
Lviv Politechnic Publishing House
Abstract
У цій роботі наведено новий зелений метод кополімеризації 1,3,5-триоксану з ε капролактоном. У цій методиці використано Maghnite-H+ (Mag H+) як об’ємний зелений каталізатор. Різні методики були використані для підтвердження будови отриманого кополімеру. Також досліджено фактори, які впливають на реакцію кополімеризації. Одержані результати показали, що найкращий вихід кополімеру (46,3 %) отримано для полімеризації в блоці за температури 353 K протягом 8 годин.
This study presents a novel green method for copolymerizing 1,3,5-trioxane (TOX) with ε caprolactone (CL). This technique uses Maghnite-H+ (Mag-H+) as a bulk green catalyst. Various techniques were used to confirm the structure of the resulting copolymer. The influencing factors on the copolymerization reaction were also studied. The results show that the best copolymer yield (46.3 %) was obtained via bulk copolymerization at a temperature of 353 K for a reaction time of 8 h.
This study presents a novel green method for copolymerizing 1,3,5-trioxane (TOX) with ε caprolactone (CL). This technique uses Maghnite-H+ (Mag-H+) as a bulk green catalyst. Various techniques were used to confirm the structure of the resulting copolymer. The influencing factors on the copolymerization reaction were also studied. The results show that the best copolymer yield (46.3 %) was obtained via bulk copolymerization at a temperature of 353 K for a reaction time of 8 h.
Description
Keywords
кополімеризація, 1, 3, 5-триоксан, Maghnite-H+, поліоксиметилен, ε-капролактон, copolymerization, 1, 3, 5-Trioxane, MaghniteH+, polyoxymethylene, ε-caprolactone
Citation
Hanane B. M. Synthesis of Copolymer from 1,3,5-Trioxane and e-Caprolactone Catalysed by Treated Bentonite as Eco-Catalyst / Benmoussa Mahi Hanane, Mohammed Issam Ferrahi // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2023. — Vol 17. — No 1. — P. 81–87.