首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Sorption kinetics of ethanol/water solution by dimethacrylate-based dental resins and resin composites.
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Sorption kinetics of ethanol/water solution by dimethacrylate-based dental resins and resin composites.

机译:二甲基丙烯酸酯基牙科树脂和树脂复合材料对乙醇/水溶液的吸附动力学。

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In the present investigation the sorption-desorption kinetics of 75 vol % ethanol/water solution by dimethacrylate-based dental resins and resin composites was studied in detail. The resins examined were made by light-curing of bisphenol A glycol dimethacrylate (Bis-GMA), triethylene glycol dimethacrylate (TEGDMA), urethane dimethacrylate (UDMA), bisphenol A ethoxylated dimethacrylate (Bis-EMA), and mixtures of these monomers. The resin composites were prepared from two commercial light-cured restorative materials (Z100 MP and Filtek Z250), the resin matrix of which is based on copolymers of the above-mentioned monomers. Ethanol/water sorption/desorption was examined in both equilibrium and dynamic conditions in two adjacent sorption-desorption cycles. For all the materials studied, it was found that the amount of ethanol/water sorbed or desorbed was always larger than the corresponding one reported in literature in case of water immersion. It was also observed that the chemical structure of the monomers used for the preparation of the resins directly affects the amount of solvent sorbed or desorbed, as well as sorption kinetics, while desorption rate was nearly unaffected. In the case of composites studied, it seems that the sorption/desorption process is not influenced much by the presence of filler. Furthermore, diffusion coefficients calculated for the resins were larger than those of the composites and were always higher during desorption than during sorption. Finally, an interesting finding concerning the rate of ethanol/water sorption was that all resins and composites followed Fickian diffusion kinetics during almost the whole sorption curve; however, during desorption the experimental data were overestimated by the theoretical model. Instead, it was found that a dual diffusion-relaxation model was able to accurately predict experimental data during the whole desorption curve. Kinetic relaxation parameters, together with diffusion coefficients, are reported for all resins and composites.
机译:在本研究中,详细研究了二甲基丙烯酸酯基牙科树脂和树脂复合材料对75 vol%乙醇/水溶液的吸附-解吸动力学。通过双酚A二醇二甲基丙烯酸酯(Bis-GMA),三乙二醇二甲基丙烯酸酯(TEGDMA),尿烷二甲基丙烯酸酯(UDMA),双酚A乙氧基化二甲基丙烯酸酯(Bis-EMA)以及这些单体的混合物的光固化来制备树脂。由两种市售的光固化修复材料(Z100 MP和Filtek Z250)制备树脂复合材料,其树脂基体基于上述单体的共聚物。在两个相邻的吸附-解吸循环中,在平衡和动态条件下都检查了乙醇/水的吸附/解吸。对于所有研究的材料,发现在水浸情况下,乙醇/水的吸附或解吸量始终大于文献中报道的相应量。还观察到,用于制备树脂的单体的化学结构直接影响被吸附或脱附的溶剂的量以及吸附动力学,而脱附速率几乎不受影响。在研究复合材料的情况下,似乎吸附/解吸过程不受填料的影响很大。此外,针对树脂计算的扩散系数大于复合材料的扩散系数,并且在解吸期间始终比在吸附期间更高。最后,关于乙醇/水吸附速率的有趣发现是,几乎在整个吸附曲线中,所有树脂和复合材料均遵循Fickian扩散动力学。然而,在解吸过程中,实验数据被理论模型高估了。相反,发现双重扩散-松弛模型能够在整个解吸曲线期间准确地预测实验数据。报告了所有树脂和复合材料的动力学弛豫参数以及扩散系数。

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