Properties of experimental resins based on synthesized propoxylated bis-GMA with different propionaldehyde ratios

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Abstract

The effect of different propionaldehyde ratios on the properties of bis-GMA-based comonomers and copolymers diluted with propoxylated bis-GMA (CH3bis-GMA) was evaluated. Five experimental comonomers were prepared combining bis-GMA with CH3bis-GMA and propionaldehyde at 0, 2, 8, 16, 24 mol%. Light polymerization was effected with the use of 0.2 wt. (%) each of camphorquinone and N,N-dimethyl-p-toluidine. Resin degrees of conversion (%DC) were evaluated by FT-IR spectrophotometry and Tg by Differential Scanning Calorimeter. Complex viscosity (π*), the effect of temperature on π*, and Microhardness (H) for dry and wet samples were also determined. Data were analyzed by Student's t-test, one-way ANOVA and Tukey-Kramer test (α = 0.05). The group with 24 mol% additive had a significant increase in %DC and H, and the lowest comonomer Tg and π*. No remarkable variation was noted in copolymers Tgs. All resins presented Newtonian behavior of viscosity, which linearly decreased with increased temperature. The π* decreased sigmoidally as the additive ratio increased.

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Denis, A. B., Plepis, A. M. G., Martins, V. D. C. A., Pereira, J. C., Cilli, R., & Prakki, A. (2012). Properties of experimental resins based on synthesized propoxylated bis-GMA with different propionaldehyde ratios. Materials Research, 15(3), 397–402. https://doi.org/10.1590/S1516-14392012005000039

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