Effect of the Z- and Macro‐R‐Group on the Thermal Desulfurization of Polymers Synthesized with Acid/Base "Switchable" Dithiocarbamate RAFT Agents

Title
Effect of the Z- and Macro‐R‐Group on the Thermal Desulfurization of Polymers Synthesized with Acid/Base "Switchable" Dithiocarbamate RAFT Agents
Publication Date
2018-10
Author(s)
Stace, Sarah J
Fellows, Christopher M
( author )
OrcID: https://orcid.org/0000-0002-8976-8651
Email: cfellows@une.edu.au
UNE Id une-id:cfellows
Moad, Graeme
Keddie, Daniel J
Type of document
Journal Article
Language
en
Entity Type
Publication
Publisher
Wiley-VCH Verlag GmbH & Co KGaA
Place of publication
Germany
DOI
10.1002/marc.201800228
UNE publication id
une:1959.11/29355
Abstract
Thermolysis is examined as a method for complete desulfurization of reversible addition‐fragmentation chain transfer (RAFT)‐synthesized polymers prepared with acid/base "switchable" N‐methyl‐N‐pyridyldithiocarbamates [R—S2CZ or R—S2CZH+]. Macro‐RAFT agents from more activated monomers (MAMs) (i.e., styrene (St), N‐isopropylacrylamide (NIPAm), and methyl methacrylate (MMA)) with R—S2CZH+ and less activated monomers (LAMs) (i.e., vinyl acetate (VAc) and N‐vinylpyrolidone (NVP)) with R—S2CZ are prepared by RAFT polymerization and analyzed by thermogravimetric analysis. In all cases, a mass loss consistent with loss of the end group (Z—CS2H) is observed at temperatures lower than, and largely discrete from, that required for further degradation of the polymer. The temperatures for end group loss and the new end groups formed are strongly dependent on the identity of the R—(P)n and the state of the pyridyl Z group; increasing in the series poly(MMA) < poly(St) ∼ poly(NIPAm) << poly(VAc) ∼ poly(NVP) for —S2CZ and poly(MMA) < poly(St) ∼ poly(NIPAm) for —S2CZH+. Clean end group removal is possible for poly(St) and poly(NVP). For poly(NIPAm), the thiocarbonyl chain end is removed, but the end group identity is less certain. For poly(MMA) and poly(VAc), some degradation of the polymer accompanies end group loss under the conditions used and further refinement of the process is required.
Link
Citation
Macromolecular Rapid Communications, 39(19), p. 1-9
ISSN
1521-3927
1022-1336
Pubmed ID
29748984
Start page
1
End page
9

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