Cure performance of multifunctional monomers to photo-initiators: a thermoanalytical study onbis-GMA-based resins
暂无分享,去创建一个
[1] K. Wakasa,et al. A visible-light activating unit with experimental light-conductors — photopolymerization in bis-GMA unfilled resins for dental application , 1990 .
[2] T. W. Wilson,et al. Characterization of Polydimethacrylates and Their Composites by Dynamic Mechanical Analysis , 1987, Journal of dental research.
[3] H. Shintani,et al. Thermoanalytical evaluation of visible-light-curved composites , 1987 .
[4] A. Caputo,et al. Degree of double bond conversion in light-cured composites. , 1987, Dental materials : official publication of the Academy of Dental Materials.
[5] J. Ferracane,et al. Relationship between shade and depth of cure for light-activated dental composite resins. , 1986, Dental materials : official publication of the Academy of Dental Materials.
[6] J. McCabe,et al. Cure performance of light-activated composites by differential thermal analysis (DTA). , 1985, Dental materials : official publication of the Academy of Dental Materials.
[7] J. Ferracane,et al. Fourier Transform Infrared Analysis of Degree of Polymerization in Unfilled Resins—Methods Comparison , 1984, Journal of dental research.
[8] S. Ban,et al. Heat of polymerization of dimethacrylate monomers investigated by isothermal DSC measurement. , 1984, Dental materials journal.
[9] W. Cook,et al. Cure of resin based restorative materials. II. White light photopolymerized resins. , 1983, Australian dental journal.
[10] J. Antonucci,et al. Extent of Polymerization of Dental Resins by Differential Scanning Calorimetry , 1983, Journal of dentistry research.
[11] E. Asmussen. Restorative resins: hardness and strength vs. quantity of remaining double bonds. , 1982, Scandinavian journal of dental research.
[12] I. E. Ruyter,et al. An infrared spectroscopic study of sealants. , 1976, Scandinavian journal of dental research.