A Modeling Study on the RAFT Polymerization of Vinyl Monomers in Supercritical Carbon Dioxide

被引:7
作者
Lopez-Dominguez, Porfirio [1 ]
Jaramillo-Soto, Gabriel [1 ]
Vivaldo-Lima, Eduardo [1 ]
机构
[1] Univ Nacl Autonoma Mexico, Dept Ingn Quim, Fac Quim, Mexico City 04510, DF, Mexico
关键词
dispersion polymerization; modeling; polystyrene (PS); reversible addition-fragmentation chain transfer (RAFT); supercritical carbon dioxide; CONTROLLED DISPERSION POLYMERIZATION; MOLECULAR-WEIGHT DEVELOPMENT; RADICAL POLYMERIZATION; CHAIN TRANSFER; PRECIPITATION POLYMERIZATION; STABILIZER CONCENTRATION; KINETICS; STYRENE; MMA; COPOLYMERIZATION;
D O I
10.1002/mren.201800011
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The kinetic modeling of reversible addition-fragmentation chain transfer (RAFT) dispersion homopolymerization of vinyl monomers in supercritical carbon dioxide is addressed. The model accounts for two reaction loci, a polymer-rich phase (dispersed) and a solvent-rich phase (continuous). In one of the models, the partition of low molar mass components is estimated by using simple equations. The second model takes into account mass transfer of the components and is built using the phase-exchange and k(s)-termination steps of the Predici software. Model predictions are compared against experimental data of polymerization of styrene using 2,2-Azobis(2-methylpropionitrile) (AIBN)/S-thiobenzoyl thioglycolic acid/supercritical carbon dioxide. The model captures well the effect of the amount of RAFT agent on polymerization rate and molar mass development. Both models allow calculation of the concentrations of all the species present in the system for each phase. The performance of the system is compared against the conventional case (in the absence of RAFT agent).
引用
收藏
页数:10
相关论文
共 44 条
[1]  
AkzoNobel Chemicals Inc, 2017, PROD DAT SHEET PERK
[2]   RAFT polymerization of methyl acrylate in carbon dioxide [J].
Arita, T ;
Beuermann, S ;
Buback, M ;
Vana, P .
MACROMOLECULAR MATERIALS AND ENGINEERING, 2005, 290 (04) :283-293
[3]  
Beuermann S., 2000, POL REACT ENG 4 C IN
[4]  
Chaffey-Millar H., 2017, MACROMOL THEOR SIMUL, V16, P575
[5]   An Update on the Pivotal Role of Kinetic Modeling for the Mechanistic Understanding and Design of Bulk and Solution RAFT Polymerization [J].
De Rybel, Nils ;
Van Steenberge, Paul H. M. ;
Reyniers, Marie-Francoise ;
Barner-Kowollik, Christopher ;
D'hooge, Dagmar R. ;
Marin, Guy. B. .
MACROMOLECULAR THEORY AND SIMULATIONS, 2017, 26 (01)
[6]   Chain Transfer in Degenerative RAFT Polymerization Revisited: A Comparative Study of Literature Methods [J].
Derboven, Pieter ;
Van Steenberge, Paul H. M. ;
Reyniers, Marie-Francoise ;
Barner-Kowollik, Christopher ;
D'hooge, Dagmar R. ;
Marin, Guy B. .
MACROMOLECULAR THEORY AND SIMULATIONS, 2016, 25 (02) :104-115
[7]   Simulating Controlled Radical Polymerizations with mcPolymer-A Monte Carlo Approach [J].
Drache, Marco ;
Drache, Georg .
POLYMERS, 2012, 4 (03) :1416-1442
[8]   Modeling of RAFT Polymerization using Probability Generating Functions. Detailed Prediction of Full Molecular Weight Distributions and Sensitivity Analysis [J].
Fortunatti, Cecilia ;
Sarmoria, Claudia ;
Brandolin, Adriana ;
Asteasuain, Mariano .
MACROMOLECULAR REACTION ENGINEERING, 2014, 8 (12) :781-795
[9]   Controlled dispersion polymerization of methyl methacrylate in supercritical carbon dioxide via RAFT [J].
Gregory, Andrew M. ;
Thurecht, Kristofer J. ;
Howdle, Steven M. .
MACROMOLECULES, 2008, 41 (04) :1215-1222
[10]   RAFT Polymerization of Vinyl Esters: Synthesis and Applications [J].
Harrisson, Simon ;
Liu, Xuan ;
Ollagnier, Jean-Noel ;
Coutelier, Olivier ;
Marty, Jean-Daniel ;
Destarac, Mathias .
POLYMERS, 2014, 6 (05) :1437-1488