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具有不同氟含量和分布的二甲基丙烯酸酯单体。

Dimethacrylate monomers with varied fluorine contents and distributions.

作者信息

Stansbury J W, Antonucci J M

机构信息

Polymers Division, National Institute of Standards and Technology, Gaithersburg, MD 20899-8545, USA.

出版信息

Dent Mater. 1999 May;15(3):166-73. doi: 10.1016/s0109-5641(99)00028-7.

Abstract

OBJECTIVES

There are many unique properties associated with fluorinated polymers that make these materials attractive for use in the challenging oral environment. This study was devised to better define the influence of fluorine content and its structural distribution on properties of fluorinated resins and composites, especially with regard to their water-related and mechanical properties.

METHODS

A series of fluorinated dimethacrylate monomers was prepared by reaction of aromatic diepoxides with fluoroalcohols and subsequent conversion of the resulting diols to the methacrylates. Composites based on monomer systems comprised of the fluorinated monomers with 1,10-decamethylene dimethacrylate and reinforced with silanized quartz filler were evaluated for conversion, water contact angle, water sorption and diametral tensile strength.

RESULTS

By selection of reactants, fluorine was introduced as trifluoromethyl groups, extended fluoroalkyl pendant chains, or combinations of the two. Photopolymerization conversion among the experimental composites was generally equal to or greater than that of a conventional Bis-GMA/TEGDMA composite. While the water contact angles generally increased with fluorine content, no correlation was obtained between fluorine content and water sorption of the composites. The mechanical strength of the fluorinated composites showed a general decline with increasing fluorine content and consistent variations due to specific structural features.

SIGNIFICANCE

A versatile route to fluorinated dimethacrylates with diverse structural and fluorine distribution patterns is presented. Composites from these monomers are very hydrophobic but have relatively low mechanical strength. The monomers described can be considered as useful additives to moderate the water sorption of conventional resins. However, the results of this study point to specific fluorinated resin structures that are expected to provide a more optimal balance between hydrophobicity and mechanical strength that will improve the long-term performance of dental composites.

摘要

目的

含氟聚合物具有许多独特性能,使其在具有挑战性的口腔环境中具有应用吸引力。本研究旨在更好地确定氟含量及其结构分布对含氟树脂和复合材料性能的影响,特别是在与水相关的性能和机械性能方面。

方法

通过芳香族二环氧化物与氟代醇反应,随后将所得二醇转化为甲基丙烯酸酯,制备了一系列含氟二甲基丙烯酸酯单体。对基于由含氟单体与1,10 - 癸二醇二甲基丙烯酸酯组成的单体体系并经硅烷化石英填料增强的复合材料进行转化率、水接触角、吸水率和径向拉伸强度评估。

结果

通过选择反应物,氟以三氟甲基、延伸的氟代烷基侧链或两者组合的形式引入。实验复合材料之间的光聚合转化率通常等于或高于传统双酚A - 甲基丙烯酸缩水甘油酯/三乙二醇二甲基丙烯酸酯复合材料。虽然水接触角通常随氟含量增加而增大,但复合材料的氟含量与吸水率之间未获得相关性。含氟复合材料的机械强度总体上随氟含量增加而下降,并因特定结构特征而呈现一致变化。

意义

提出了一种制备具有不同结构和氟分布模式的含氟二甲基丙烯酸酯的通用方法。由这些单体制成的复合材料非常疏水,但机械强度相对较低。所描述的单体可被视为调节传统树脂吸水率的有用添加剂。然而,本研究结果指出了特定的含氟树脂结构,有望在疏水性和机械强度之间提供更优平衡,从而改善牙科复合材料的长期性能。

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