Université de Haute-Alsace, CNRS, IS2M UMR 7361, 68100 Mulhouse, France; Université de Strasbourg, 67000 Strasbourg, France.
Université de Haute-Alsace, CNRS, IS2M UMR 7361, 68100 Mulhouse, France; Université de Strasbourg, 67000 Strasbourg, France; Faculty of Dentistry, University of Lorraine, France; Oregon Health and Science University, Portland, Oregon, USA.
Dent Mater. 2021 Mar;37(3):382-390. doi: 10.1016/j.dental.2020.12.013. Epub 2021 Jan 16.
The two-component Camphorquinone (CQ)/aromatic amine system is well-established and clearly corresponds to the reference system used in all photopolymerizable dental adhesives and composites. However, this CQ/amine system still suffers from the presence of aromatic amines that can be referenced as toxic. Therefore, the aim of this work is to develop amine-free photoinitiating systems (PISs) for the polymerization of a representative dental methacrylate resins upon blue light irradiation. The proposed strategy is based on the in-silico design (by molecular modelling) of new hydrogen donors (amine-free) bearing a copolymerizable moiety (methacrylate functionality) to ensure their low migration/leaching properties from the synthesized polymer. The new proposed PISs are compared to the well-established CQ/amine system for the polymerization of different methacrylate blends upon exposure to a commercial blue dental LED centered at 477 nm.
Molecular orbitals calculations are used to design new hydrogen donors exhibiting low C-H bond dissociation energies. Based on this in-silico design, the syntheses of new co-initiators are reported here for the first time. Real-time FTIR experiments are used to monitor the photopolymerization profiles. Color indexes measurements were also carried out to investigate the bleaching properties of the new proposed systems.
Three new co-initiators are proposed as alternatives to aromatic amines in dental materials in combination with camphorquinone. The performances of the new proposed amine-free PISs for the photopolymerization of thick (1.4 mm) samples of methacrylate upon exposure to a blue dental LED under air are excellent. Similar or better polymerization performances are obtained with the new proposed amine-free systems compared to those reached with the CQ/amine reference. Excellent bleaching properties are also found. The involved chemical mechanisms are investigated through molecular orbitals calculations.
双组分樟脑醌(CQ)/芳族胺系统已经得到了很好的建立,并且与所有光聚合牙科胶粘剂和复合材料中使用的参考系统明显对应。然而,这个 CQ/胺系统仍然存在芳族胺,这些胺可以被认为是有毒的。因此,本工作的目的是开发用于聚合代表性牙科甲基丙烯酸酯树脂的无胺光引发体系(PIS),在蓝光照射下进行聚合。所提出的策略基于新的氢供体(无胺)的计算机模拟设计(通过分子建模),这些氢供体带有可共聚的部分(甲基丙烯酸酯官能团),以确保它们从合成聚合物中低迁移/浸出。新提出的 PIS 与成熟的 CQ/胺系统进行比较,用于在暴露于商业蓝色牙科 LED 时聚合不同的甲基丙烯酸酯混合物,该 LED 的中心波长为 477nm。
分子轨道计算用于设计具有低 C-H 键离解能的新氢供体。基于这种计算机模拟设计,首次报道了新的共引发剂的合成。实时傅里叶变换红外实验用于监测光聚合曲线。颜色指数测量也用于研究新提出的体系的漂白性能。
提出了三种新的共引发剂作为牙科材料中芳族胺的替代品,与樟脑醌结合使用。新提出的无胺 PIS 在空气中暴露于蓝色牙科 LED 下聚合厚(1.4mm)甲基丙烯酸酯样品的性能非常出色。与 CQ/胺参考体系相比,新提出的无胺体系获得了相似或更好的聚合性能。还发现了极好的漂白性能。通过分子轨道计算研究了所涉及的化学机制。