Auto-Acceleration in Free Radical Polymerizations Caused by Oriented Monomer-Polymer Association Complexes

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Abstract

Auto-accelerated polymerizations are known to occur in viscous reaction media (“gel-effect”) and also when the polymer precipitates as it forms. It is generally assumed that the cause of auto-acceleration is the arising of non-steady-state kinetics created by a diffusion controlled termination step. Recent work has shown that the polymerization of acrylic acid in bulk and in solution proceeds under steady or auto-accelerated conditions irrespective of the precipitation of the polymer. On the other hand, a close correlation is established between auto-acceleration and the type of H-bonded molecular association involving acrylic acid in the system. On the basis of numerous data it is concluded that auto-acceleration is determined by the formation of an oriented monomer-polymer association complex which favors an ultra-fast propagation process. Similar conclusions are derived for the polymerization of methacrylic acid and acrylonitri1e based on studies of polymerization kinetics in bulk and in solution and on evidence of molecular associations. In the case of acrylonitrile a dipole-dipole complex involving the nitrile groups is assumed to be responsible for the observed auto-acceleration. © 1981, Walter de Gruyter. All rights reserved.

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APA

Chapiro, A. (1981). Auto-Acceleration in Free Radical Polymerizations Caused by Oriented Monomer-Polymer Association Complexes. Pure and Applied Chemistry, 53(3), 643–655. https://doi.org/10.1351/pac198153030643

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