Dithioketal Polymers Via Radical Polymerization of γ‐Dithiobutyrolactone

M Maksym Odnoroh (Laboratoire Softmat Université De Toulouse Toulouse France) O Oleksandr Ivanchenko (Laboratoire Softmat Université De Toulouse Toulouse France) A Asja A. Kroeger (Institute For Nanoscale Science&Technology Flinders University Adelaide South Australia Australia) M Michelle L. Coote (Flinders University , , Bedford Park , ,) S Stéphane Mazières M Mathias Destarac (Laboratoire Softmat Université De Toulouse Toulouse France)

Abstract

ABSTRACT Polymers bearing in‐chain dithioketal groups are an emerging class of materials with specific properties like reactive oxygen species (ROS)‐responsiveness and vitrimer‐type behavior. Until now, these polymers have been exclusively produced by step‐growth polymerization or polyaddition; herein, we report the first chain polymerization leading to dithioketal polymers. γ‐dithiobutyrolactone (DTBL) is radically copolymerized with a series of conjugated monomers to yield copolymers with ring‐retained dithioketal units exclusively. DFT calculations rationalize the contrasting behaviors of DTBL and its thionolactone analogue γ‐thionobutyrolactone (TBL), highlighting how electronic effects of the ring heteroatoms govern propagation efficiency and ring‐retention versus ring‐opening pathways. The ability of DTBL to bring degradability to thermosets, latexes, and RAFT‐derived complex architectures is revealed.

Article Details

Volume / Issue Vol. 65, Issue 21
Published May 18, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

M

Maksym Odnoroh

Laboratoire Softmat Université De Toulouse Toulouse France

O

Oleksandr Ivanchenko

Laboratoire Softmat Université De Toulouse Toulouse France

A

Asja A. Kroeger

Institute For Nanoscale Science&Technology Flinders University Adelaide South Australia Australia

M

Michelle L. Coote

Flinders University , , Bedford Park , ,

S

Stéphane Mazières

M

Mathias Destarac

Laboratoire Softmat Université De Toulouse Toulouse France