Mesolytic Versus Homolytic Cleavage in Photochemical Nitroxide-Mediated Polymerization
Author(s) -
Nicholas S. Hill,
Melinda J. Fule,
Jason Morris,
JeanLouis Clément,
Yohann Guillaneuf,
Didier Gigmès,
Michelle L. Coote
Publication year - 2020
Publication title -
macromolecules
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.994
H-Index - 313
eISSN - 1520-5835
pISSN - 0024-9297
DOI - 10.1021/acs.macromol.0c00134
Subject(s) - homolysis , nitroxide mediated radical polymerization , chemistry , chromophore , photochemistry , moiety , radical , polymerization , benzophenone , radical polymerization , organic chemistry , polymer
Time-dependent density functional theory calculations have been performed to study the photocleavage reactions of chromophore-functionalized alkoxyamines in nitroxide-mediated photopolymerization. Two case studies were considered: azaphenalene derivatives and benzophenone-based alkoxyamines. For the azaphenalenes, we show that the expected homolysis pathway is actually inaccessible. Instead, these alkoxyamines exhibit low-lying nNπ* excited states that exhibit an electronic structure about the nitroxide moiety similar to that of the formally oxidized radical cation. As a result, the cleavage of these alkoxyamines can be described as mesolytic-like rather than homolytic. As with formally oxidized species, mesolytic cleavage can result in the production of either carbon-centered radicals or carbocations, with only the former resulting in radical polymerization. Here, the cleavage products are found to be dependent on the respective radical/cation stabilities of the monomer units of choice (styrene, ethyl pr...
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