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Dental restorative composites containing methacrylic spiroorthocarbonate monomers as antishrinking matrixes

机译:牙科修复复合材料含有甲基丙烯酸螺螺碳酸盐单体作为反缩小基质

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In this work, the synthesis of two new antishrinking methacrylic monomers of spiroorthocarbonate type, SOC-IP-UDMA and SOC-UDMA, is discussed, along with studies of their performance as polymeric matrix in dental composites. The monomers were photoactive with components of a conventional resin composite. In order to study the photocuring kinetics of these SOC monomers, a real-time test was performed using FTIR spectroscopy. It was found that SOCs promoted higher double bond conversions (DC) than conventional methacrylic monomer bis-GMA (48%), reaching a DC value of 68% for SOC-UDMA and 75% for SOC-IP-UDMA. The shrinkage stress that accompanies curing of dental composites was measured by a universal testing machine. These new monomer SOCs are capable of reducing the shrinkage up to 51.1% and 27.7% for both methacrylic monomers when they were compared with bis-GMA as control. Also, a dynamical mechanical analysis was conducted on the dental composites, obtaining a higher modulus and a range of T-g values from 80 to 100 degrees C. Others parameters like flexural properties, solubility, and sorption water were determined, obtaining values better than or equal to the parameters established by the standard ISO 4049. These monomers can be considered as alternative matrixes to replace bis-GMA in dental composites. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47114.
机译:在这项工作中,讨论了两种新的铜甾烃类甲基丙烯酸甲基丙烯酸甲基丙烯酸类单体,SOC-IP-UDMA和SOC-UDMA的合成,以及它们在牙科复合材料中作为聚合物基质的性能的研究。单体用常规树脂复合材料的组分光活性。为了研究这些SOC单体的光固化动力学,使用FTIR光谱进行实时测试。发现SOC促进了比常规甲基丙烯酸单体BIS-GMA(48%)更高的双键转化(DC),达到SoC-UDMA的DC值为68%,SoC-IP-UDMA的75%。通过通用试验机测量牙科复合材料固化的收缩应力。当将它们与双-GMA进行比较时,这些新的单体SOC能够将甲基丙烯酸单体的收缩达51.1%和27.7%。此外,在牙科复合材料上进行动力学机械分析,获得更高的模量和从80至100摄氏度的Tg值的范围。确定如弯曲性能,溶解度和吸附水,获得比或等于的值对于标准ISO 4049建立的参数。这些单体可以被认为是替代牙科复合材料中的BIS-GMA的替代基质。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47114。

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