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含喹喔啉基光引发剂的新型牙科材料的光聚合放热过程研究。

Study on New Dental Materials Containing Quinoxaline-Based Photoinitiators in Terms of Exothermicity of the Photopolymerization Process.

机构信息

Faculty of Chemical Technology and Engineering, Bydgoszcz University of Science and Technology, 85-326 Bydgoszcz, Poland.

Institute of Mathematics and Physics, Bydgoszcz University of Science and Technology, Al. Prof. S. Kaliskiego St. 7, 85-796 Bydgoszcz, Poland.

出版信息

Int J Mol Sci. 2023 Feb 1;24(3):2752. doi: 10.3390/ijms24032752.

Abstract

Modern dentistry places great demands on the dental composites used for filling tooth cavities or treating cavitated tooth decay. The aim of the work was to modify the properties of composites by changing the initiators and co-initiators. This was achieved by using initiators based on a quinoxaline skeleton and co-initiators that are derivatives of acetic acid, which is an advantage of these photoinitiating systems due to the elimination of aromatic amines from the photocurable composition. The composites also differed in dental fillers. The effect of the compounds on the exothermicity of the photopolymerization process, the surface morphology of the obtained materials and the maximum compressive strength were determined. The photoinitiating capacity of the two-component systems was tested by the microcalorimetric method using the multifunctional monomer TMPTA, typical for dental filler compositions. The new photoinitiating systems show particularly good efficiency of free radical polymerization initiation, which occurs by the photoinduced intermolecular electron transfer (PET) mechanism. The comparison of the tested systems with camphorquinone, a photoinitiator traditionally used in dentistry, made it possible to observe a decrease in temperature during photopolymerization without a significant decrease in the polymerization rate or increase in photocuring time, as well as a better homogeneity of the surface of the obtained polymeric materials. This indicates that dye-acetic acid derivative systems may be useful in dental applications.

摘要

现代牙科对用于填充牙洞或治疗龋齿的牙科复合材料提出了很高的要求。本工作的目的是通过改变引发剂和共引发剂来改变复合材料的性能。通过使用基于喹喔啉骨架的引发剂和乙酸的衍生物作为共引发剂来实现这一点,这是这些光引发体系的优势,因为从光固化组合物中消除了芳香胺。复合材料在牙科填充物方面也有所不同。确定了化合物对光聚合过程放热、所得材料的表面形态和最大抗压强度的影响。通过使用多功能单体 TMPTA(典型的牙科填充物组合物)的微热量法测试了双组分体系的光引发能力。两种新的光引发体系显示出特别好的自由基聚合引发效率,这是通过光诱导分子间电子转移(PET)机制发生的。将测试体系与传统上用于牙科的光引发剂樟脑醌进行比较,观察到光聚合过程中的温度下降,而聚合速率没有明显降低或光固化时间增加,以及获得的聚合材料表面的均匀性更好。这表明染料-乙酸衍生物体系可能在牙科应用中有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db76/9917465/afef175ccefa/ijms-24-02752-g001.jpg

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