Literature DB >> 35138013

Oxygen-Demanding Photocontrolled RAFT Polymerization Under Ambient Conditions.

Yao Peng1, Shengjie Liu1, Ling Wang1, Ying Xu2, Zhaoqiang Wu1, Hong Chen1.   

Abstract

A photocontrolled reversible addition-fragmentation chain transfer (RAFT) process is developed by initiating polymerization through a 1,3-diaminopropane-triethylborane (DAPTB)-diphenyl iodonium salt (Ph2 I+ ) complex (DAPTB/Ph2 I+ ) under ambient temperature and atmospheric conditions. Upon demand, this air-stable DAPTB/Ph2 I+ complex is photolyzed to liberate a reactive triethylborane that consumes atmospheric oxygen and generates ethyl radicals, which initiate and mediate RAFT polymerization. Controlled RAFT polymerization is thus achieved without any prior deoxygenation using a novel RAFT chain transfer agent, BP-FSBC, which contains both benzophenone and sulfonyl fluoride moieties. Furthermore, the kinetics of polymerization reveal that the reaction process is rapid, and well-defined polymers are produced by a 61% conversion of 2-hydroxyethyl acrylate (HEA) within 7 min and 77% conversion of N,N-dimethylacrylamide (DMA) within 10.5 min. The temporal and spatial control of this photopolymerization is also demonstrated by an "on/off" switch of UV irradiation and a painting-on-a-surface approach, respectively. In addition, active chain ends are demonstrated by preparing block copolymers by chain extension and click sulfur(VI)-fluoride exchange postreaction using RAFT-derived macrochain transfer agents.
© 2022 Wiley-VCH GmbH.

Entities:  

Keywords:  RAFT polymerization; SuFEx reaction; ambient conditions; photocontrolled polymerization; triethylborane

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Year:  2022        PMID: 35138013     DOI: 10.1002/marc.202100920

Source DB:  PubMed          Journal:  Macromol Rapid Commun        ISSN: 1022-1336            Impact factor:   5.734


  1 in total

1.  Simple and Rapid Adhesion of Commodity Polymer Substrates under Ambient Conditions Using Complexed Alkylboranes.

Authors:  Olivia R Wilson; Dominick J Borrelli; Andrew J D Magenau
Journal:  ACS Omega       Date:  2022-08-02
  1 in total

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