A complete kinetic study of a versatile functional monomer: acetoacetoxyethyl methacrylate (AAEMA)

The current study reports the complete kinetic analysis of acetoacetoxyethyl methacrylate (AAEMA). The temperature dependent propagation rate coefficient, k p , was accessed by pulsed laser polymerization-size exclusion chromatography (PLP-SEC), affording the following Arrhenius parameters: A = 2.13...

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Veröffentlicht in:Polymer chemistry 2016-01, Vol.7 (35), p.5518-5525
Hauptverfasser: Zoller, Alexander, Kockler, Katrin B, Rollet, Marion, Lefay, Catherine, Gigmes, Didier, Barner-Kowollik, Christopher, Guillaneuf, Yohann
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Sprache:eng
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Zusammenfassung:The current study reports the complete kinetic analysis of acetoacetoxyethyl methacrylate (AAEMA). The temperature dependent propagation rate coefficient, k p , was accessed by pulsed laser polymerization-size exclusion chromatography (PLP-SEC), affording the following Arrhenius parameters: A = 2.13 10 6 L mol 1 s 1 and E a = 19.69 kJ mol 1 . For the SEC-analysis, the MarkHouwinkKuhnSakurada (MHKS) parameters of the corresponding polymer were determined ( K = 0.0250 mL g 1 ; = 0.547) via multiple detection SEC. Furthermore, reactivity ratios for the copolymerization with methyl methacrylate (MMA) at 75 C in ethyl 3-ethoxypropionate (EEP) were obtained by the MeyerLowry method ( r MMA = 0.89; r AAEMA = 0.98), supported by a detailed kinetic simulation using the PREDICI simulation package. In addition, copolymerization was carried out at ambient temperature with a bicomponent dibenzoyl peroxide (BPO)/dihydroxyethyl- p -toluidine (DHEPT) initiator system, demonstrating a strong increase of the rate of copolymerization with increasing AAEMA content ( i.e. 40% decrease of the gel time by adding 10 mol% of AAEMA). The current study reports the complete kinetic analysis of acetoacetoxyethyl methacrylate (AAEMA).
ISSN:1759-9954
1759-9962
DOI:10.1039/c6py01115b