Investigation of methacrylate free-radical depropagation kinetics by pulsed-laser polymerization

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作者
Hutchinson, Robin A. [1 ]
Paquet Jr., Donald A. [1 ]
Beuermann, Sabine [1 ]
McMinn, John H. [1 ]
机构
[1] E.I. du Pont de Nemours and Co, Inc, Wilmington, United States
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关键词
Composition effects - Enthalpy - Entropy - Free radical polymerization - High temperature properties - Monomers - Pulsed laser applications - Reaction kinetics - Thermal effects;
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摘要
An extensive study of free-radical depropagation kinetics has been performed for several methacrylates at high temperatures in bulk and solution using a pulsed-laser technique. As expected from theory, the relative importance of depropagation on rate increases with increasing temperature and with decreasing monomer concentration. The temperature dependence of n-dodecyl methacrylate depropagation has been quantified. The resulting estimates for enthalpy (-50 to -60 kJ/mol) and entropy (-105 to -127 J/(mol&middotK)) of polymerization, although highly correlated, are in good agreement with available literature data. Moreover, the best-fit values (-53.8 kJ/mol and -113 J/(mol&middotK)) provide a good representation of high-temperature propagation/depropagation kinetics measured for n-butyl, cyclohexyl, isobornyl, and 2-hydroxypropyl methacrylates, suggesting that a single set of universal values may be employed when modeling high-temperature polymerizations of all methacrylates.
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页码:3567 / 3574
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