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Structure-property relationship in new photo-cured dimethacrylate-based dental resins

机译:新型光固化二甲基丙烯酸酯基牙科树脂的结构性质关系

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Objectives. In this study five novel dimethacrylates of different chain lengths having rigid aromatic rings were synthesized and proposed as possible dental monomers for dental resin mixtures. Methods. Four monomers were prepared by the reaction of glycidyl methacrylate with dicarboxylic acid esters obtained from phthalic anhydride and 1,3-propylene, 1,4-butylene, 1,5-penthylene and 1,6-hexylene glycols. The addition reaction of glycidyl methacrylate and the acidic compound was carried out in the presence of tetraethy-lammonium bromide. The fifth monomer was obtained from 1,5-penthylene glycol-based dimethacrylate by blocking its hydroxyl groups with acetyl groups. The monomers were photo-copolymerized with triethyleneglycol dimethacrylate (TEGDMA) in the presence of a photoinitiator which was 2,2-dimethoxy-2-phenyloacetophenone. Unfilled polymers were evaluated for photopolymerization conversion and volumetric curing shrinkage. Water sorption, water solubility, flexural strength and hardness were measured. The prepared polymers were also subjected to dynamic mechanical studies (DMA). Results. Results show that, increasing the distance between double bonds decreases flexural modulus and hardness. As expected, the curing shrinkage increased with increasing degree of conversion. The acetylation of hydroxyl groups resulted in improved water uptake properties of the compositions. It was demonstrated that, depending upon the content of acetyl groups in the network, the glass transition temperature may be significantly lowered. In polymers with large amounts of pendant groups, p relaxation overlaps with a relaxation (glass transition temperature), and it is the former that discloses the maximum on the tan S curve. Significance. The systematic change in the length of the new dimethacrylates provided insight into the effects on the resultant material properties. It was shown in the article that the properties of the new monomers compare favorably with properties of the commercially available resins.
机译:目标。在这项研究中,合成了五种具有刚性芳环的不同链长的新型二甲基丙烯酸酯,并被提议作为牙科树脂混合物的牙科单体。方法。通过使甲基丙烯酸缩水甘油酯与由邻苯二甲酸酐和1,3-丙烯,1,4-丁烯,1,5-亚戊二醇和1,6-己二醇得到的二羧酸酯反应制备四种单体。甲基丙烯酸缩水甘油酯和酸性化合物的加成反应在四乙基溴化铵的存在下进行。第五单体通过基于1,5-戊二醇的二甲基丙烯酸酯的羟基被乙酰基封端而获得。在光引发剂为2,2-二甲氧基-2-苯基乙酰苯的存在下,将单体与三甲基丙烯酸二乙二醇酯(TEGDMA)光共聚。评估未填充的聚合物的光致聚合转化率和体积固化收缩率。测量了吸水率,水溶性,弯曲强度和硬度。制备的聚合物还经过动态力学研究(DMA)。结果。结果表明,增加双键之间的距离会降低弯曲模量和硬度。如预期的,固化收缩率随着转化率的增加而增加。羟基的乙酰化导致组合物的吸水性能提高。已经证明,取决于网络中乙酰基的含量,玻璃化转变温度可以显着降低。在具有大量侧基的聚合物中,p松弛与松弛(玻璃化转变温度)重叠,并且前者揭示了tan S曲线上的最大值。意义。新的二甲基丙烯酸酯长度的系统变化提供了对所得材料性能影响的见解。该文章表明,新单体的性能与市售树脂的性能相比具有优势。

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