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Vinyl sulfonamide based thermosetting composites via thiol-Michael polymerization

机译:通过硫醇-迈克尔聚合的乙烯基磺酰胺基热固性复合材料

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Objective. To assess the performance of thiol Michael photocurable composites based on ester-free thiols and vinyl sulfonamides of varying monomer structures and varied filler loadings and to contrast the properties of the prototype composites with conventional BisGMA-TEGDMA methacrylate composite.Methods. Synthetic divinyl sulfonamides and ester-free tetrafunctional thiol monomers were utilized for thiol-Michael composite development with the incorporation of thiolated micro filler. Polymerization kinetics was investigated using FTIR spectroscopy. Resin viscosities were assessed with rheometry. Water uptake properties were assessed according to standardized methods. Thermomechanical properties were analyzed by dynamic mechanical analysis. Flexural modulus/strength and flexural toughness were measured on a universal testing machine in three-point bending testing mode.Results. The vinyl sulfonamide -based thiol-Michael resin formulation demonstrated a wide range of viscosities with a significant increase in the functional group conversion when compared to the BisGMA-TEGDMA system. The two different types of vinyl sulfonamide under investigation demonstrated significant differences towards the water sorption. Tertiary vinyl sulfonamide did not undergo visible swelling whereas the secondary vinyl sulfonamide composite swelled extensively in water. With the introduction of rigid monomer into the polymer matrix the glass transition temperature increased and so increased the toughness. Glassy thiol-Michael composites were obtained by ambient curing.Significance. Employing the newly developed step-growth thiol-Michael resins in dental composites will provide structural uniformity, improved stability and lower water sorption. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:目的。评估基于无酯硫醇和乙烯基磺酰胺的,具有不同单体结构和填料填充量的硫醇迈克尔可光固化复合材料的性能,并与常规BisGMA-TEGDMA甲基丙烯酸酯复合材料的原型复合材料的性能进行对比。合成的二乙烯基磺酰胺和不含酯的四官能硫醇单体被用于硫醇-迈克尔复合材料的开发,并加入了硫醇化的微填料。使用FTIR光谱研究了聚合动力学。用流变仪评估树脂粘度。根据标准化方法评估吸水性能。通过动态力学分析来分析热力学性能。在万能试验机上以三点弯曲测试模式测量弯曲模量/强度和弯曲韧性。与BisGMA-TEGDMA系统相比,基于乙烯基磺酰胺的硫醇-迈克尔树脂配方具有广泛的粘度范围,且官能团转化率显着提高。所研究的两种不同类型的乙烯基磺酰胺在吸水方面表现出显着差异。叔乙烯基磺酰胺没有发生明显的溶胀,而仲乙烯基磺酰胺复合物则在水中大量溶胀。随着将刚性单体引入聚合物基体中,玻璃化转变温度升高,因此提高了韧性。玻璃化硫醇-迈克尔复合材料是通过环境固化获得的。意义重大。在牙科复合材料中采用新开发的逐步生长的硫醇-迈克尔树脂将提供结构均匀性,更高的稳定性和更低的吸水率。 (C)2019牙科材料学院。由Elsevier Inc.出版。保留所有权利。

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