Functionalized Polyisobutylene and Polyisobutylene‐Based Block Copolymers by Mechanistic Transformation from Cationic to Radical Process

Author:

Cakir Yusra Bahar1,Makarevich Miraslau23,Bohdan Mikalai234,Celiker Tugba1,Hulnik Maksim24,Vasilenko Irina V.24,Kiskan Baris1,Kostjuk Sergei V.24ORCID

Affiliation:

1. Department of Chemistry, Faculty of Science and Letters Istanbul Technical University Maslak Istanbul 34469 Turkey

2. Research Institute for Physical Chemical Problems of the Belarusian State University 14 Leningradskaya St. Minsk 220006 Belarus

3. Department of Chemistry Belarusian State University Leningradskaya St. 14 Minsk 220006 Belarus

4. Sechenov First Moscow State Medical University Institute for Regenerative Medicine Moscow 119991 Russia

Abstract

AbstractThe strategy for the preparation of polyisobutylene‐based block copolymers via mechanistic transformation from cationic to radical polymerization is reported. This strategy involves the synthesis of 2‐bromo‐2‐methylpropanoyl‐terminated difunctional polyisobutylene macroinitiator (BiBB‐PIB‐BiBB) via consecutive cationic polymerization, in situ preparation of hydroxyl‐terminated polyisobutylene and its acylation by 2‐bromo‐2‐methylpropanoyl bromide. The Mn2(CO)10−triggered photo‐induced radical polymerization of styrene in bulk using this macroinitiator leads to the formation of multiblock copolymer, while predominantly triblock copolymer is generated during the polymerization of methyl methacrylate. The possibility to functionalize the polyisobutylene by pyrene via photo‐induced radical addition of 1‐bromomethyl pyrene in the presence of Mn2(CO)10 is also demonstrated in this work.

Funder

Ministry of Science and Higher Education of the Russian Federation

Bilimsel Araştırma Projeleri Birimi, İstanbul Teknik Üniversitesi

Ulusal Metroloji Enstitüsü, Türkiye Bilimsel ve Teknolojik Araştirma Kurumu

Publisher

Wiley

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