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A urethane-based multimethacrylate mixture and its use in dental composites with combined high-performance properties

机译:氨基甲酸酯基聚甲基丙烯酸酯混合物及其在兼具高性能的牙科复合材料中的应用

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Objectives. To synthesize and characterize different molar weight urethane multimethacry-lates with a single stage (one-pot) procedure. To prepare and characterize the properties of related composites. Methods. Two methacrylate precursors were initially synthesized. Then, these precursors and the multimethacrylate system formed by their coupling were characterized by FTIR and ~1H NMR. The final product was used as a matrix (with TEGDMA and SiO_2 silanized microparticles) in the preparation of composites and their physical and mechanical properties were compared to those of a bis-GMA-based resin. Water sorption and solubility measurements of the composites were also performed. Results. FTIR and NMR suggested that the proposed synthesis route yields a mixture of mainly urethane-di, -tri, and tetramethacrylates. The composites presented low polymerization shrinkage (e.g. 1.88 ±0.08% for a resin with 70% of SiO_2) and high flexural strength (e.g. 124.74 ± 9.68 MPa for a resin with 65% of SiO_2) when compared to the bis-GMA based resin and other composites found to date. Water sorption and solubility results show that the composites were deemed compliant with ISO 4049 requirements. Significance. The mixture containing different molar weight of urethane multimethacrylates showed to be an excellent substitute for bis-GMA, achieving an equilibrium of properties (unlike reports elsewhere which show the enhancement of some parameters in detriment to others) and composites with low polymerization shrinkage, suitable microhardness and degree of conversion, and up to standard water sorption/solubility and flexural strength.
机译:目标。用一个步骤(一锅法)合成和表征不同摩尔质量的氨基甲酸酯多甲基丙烯酸酯。制备和表征相关复合材料的性能。方法。最初合成了两种甲基丙烯酸酯前体。然后,通过FTIR和〜1H NMR对这些前体和通过偶联形成的聚甲基丙烯酸酯体系进行表征。最终产品在复合材料的制备中用作基质(带有TEGDMA和SiO_2硅烷化的微粒),并将其物理和机械性能与bis-GMA基树脂进行了比较。还进行了复合材料的吸水率和溶解度测量。结果。 FTIR和NMR表明所提出的合成路线产生主要是氨基甲酸酯-二,-三和四甲基丙烯酸酯的混合物。与基于bis-GMA的树脂相比,该复合材料的聚合收缩率低(例如,含70%SiO_2的树脂为1.88±0.08%)和高挠曲强度(例如含65%SiO_2的树脂为124.74±9.68 MPa)。迄今为止发现的其他复合材料。吸水率和溶解度结果表明,该复合材料被认为符合ISO 4049要求。意义。含有不同摩尔浓度的氨基甲酸酯多甲基丙烯酸酯的混合物被证明是bis-GMA的极佳替代品,可实现性能平衡(不同于其他地方的报告显示某些参数对其他参数不利)和低聚合收缩,合适的显微硬度的复合材料转化率,以及不超过标准的水吸收/溶解度和抗弯强度。

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