Primary cyclization in the polymerization of bis-GMA and TEGDMA: a modeling approach to understanding the cure of dental resins

被引:152
作者
Elliott, JE [1 ]
Lovell, LG [1 ]
Bowman, CN [1 ]
机构
[1] Univ Colorado, Dept Chem Engn, Boulder, CO 80309 USA
关键词
dental resins; photopolymerizations; methacrylates; cyclization; model;
D O I
10.1016/S0109-5641(00)00075-0
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
An optimal dental restorative polymeric material would have a homogeneous cross-linking density giving it consistent mechanical strength throughout the material. When multifunctional monomers are polymerized, a pendant double bond can react intramolecularly with the radical on its propagating chain to form a loop, which results in a primary cyclization reaction. Primary cyclization does not contribute to overall network structure, causes microgel formation, and leads to heterogeneity in the polymer. Knowledge of how cure conditions control the degree of primary cyclization and cross-linking in the polymer is important in developing better dental materials. To gain more understanding about the evolving polymer network, the photopolymerization of a typical dental resin (75/25 wt% bis-GMA/ TEGDMA) is modeled using a first principals approach. The overall polymerization rate behavior of 75/25 wt% bis-GMA/TEGDMA is predicted using experimentally obtained propagation and termination kinetic rate constants. The effect of chain stiffness and light intensity on the polymerization kinetics is also explored. Furthermore, the model predicts the extent of cross-linking and primary cyclization in the growing polymer network. At 45% conversion, the fraction of bis-GMA and TEGDMA pendant double bonds created that have cycled is 11 and 33%, respectively. The model shows that using a stiff monomer, like bis-GMA, in dental resins diminishes the extent of cyclization and increases the cross-linking density of the polymer. Therefore, better mechanical properties are obtained than if more flexible monomers were used. (C) 2001 Academy of Dental Materials. Published by Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:221 / 229
页数:9
相关论文
共 35 条
[1]   KINETIC EVIDENCE OF REACTION-DIFFUSION DURING THE POLYMERIZATION OF MULTI(METH)ACRYLATE MONOMERS [J].
ANSETH, KS ;
WANG, CM ;
BOWMAN, CN .
MACROMOLECULES, 1994, 27 (03) :650-655
[2]   KINETIC GELATION MODEL PREDICTIONS OF CROSS-LINKED POLYMER NETWORK MICROSTRUCTURE [J].
ANSETH, KS ;
BOWMAN, CN .
CHEMICAL ENGINEERING SCIENCE, 1994, 49 (14) :2207-2217
[3]  
ANSETH KS, 1992, POLYM REACT ENG, V0001, P00499
[4]  
ANSETH KS, 1994, THESIS U COLORADO BO
[5]   TERMINATION-RATE COEFFICIENTS IN METHYL-METHACRYLATE POLYMERIZATIONS [J].
BALLARD, MJ ;
NAPPER, DH ;
GILBERT, RG ;
SANGSTER, DF .
JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 1986, 24 (05) :1027-1041
[6]   A COMPARISON OF MONOMER CONVERSION AND INORGANIC FILLER CONTENT IN VISIBLE LIGHT-CURED DENTURE RESINS [J].
BARRON, DJ ;
RUEGGEBERG, FA ;
SCHUSTER, GS .
DENTAL MATERIALS, 1992, 8 (04) :274-277
[7]   QUALITATIVE PERCOLATION STUDY OF FREE-RADICAL CROSS-LINKING POLYMERIZATION [J].
BOOTS, HMJ ;
PANDEY, RB .
POLYMER BULLETIN, 1984, 11 (05) :415-420
[8]   PHOTOPOLYMERIZATION KINETICS OF OLIGO(ETHYLENE OXIDE) AND OLIGO(METHYLENE) OXIDE DIMETHACRYLATES [J].
COOK, WD .
JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 1993, 31 (04) :1053-1067
[9]   THERMAL ASPECTS OF THE KINETICS OF DIMETHACRYLATE PHOTOPOLYMERIZATION [J].
COOK, WD .
POLYMER, 1992, 33 (10) :2152-2161
[10]   PROPERTIES OF EXPANDING SOC/EPOXY COPOLYMERS FOR DENTAL USE IN DENTAL COMPOSITES [J].
EICK, JD ;
BYERLEY, TJ ;
CHAPPELL, RP ;
CHEN, GR ;
BOWLES, CQ ;
CHAPPELOW, CC .
DENTAL MATERIALS, 1993, 9 (02) :123-127