含有介孔和无孔球形二氧化硅组合作为填料的实验性牙科复合材料的机械性能。
Mechanical properties of experimental dental composites containing a combination of mesoporous and nonporous spherical silica as fillers.
作者信息
Samuel Solomon Praveen, Li Shuxi, Mukherjee Indraneil, Guo Yi, Patel Alpa C, Baran George, Wei Yen
机构信息
Department of Chemistry, Drexel University, Philadelphia, PA 19104, USA.
出版信息
Dent Mater. 2009 Mar;25(3):296-301. doi: 10.1016/j.dental.2008.07.012. Epub 2008 Sep 19.
OBJECTIVES
Mesoporous fillers have been investigated for use in dental composites because of their potential for creating micromechanical filler/resin matrix interphase bonding. Such a micromechanical bonding could eliminate the need for the silane treatment of fillers for interfacial chemical bonding that is prone to hydrolysis in the oral environment. In the case of micromechanical bonding, dental polymer chains are threaded mechanically (like a "necklace") through nanosized channels in the fillers.
METHODS
A combination of mesoporous silica, which was synthesized using the non-surfactant templating method, and nonporous spherical silica (500nm) was used to prepare experimental dental composites. The porous silica used in this study contained interconnected pores and channels as opposed to porous fillers containing surface pores. The compressive strength, compressive modulus, flexural modulus, and flexural strength of these composites were evaluated.
RESULTS
The results showed that composites containing a combination of mesoporous and nonporous fillers have better mechanical properties than the composites having either of these fillers alone.
SIGNIFICANCE
The results showed that a combination of mesoporous and nonporous materials can be used to prepare stronger dental materials that may resist hydrolysis and wear.
目的
介孔填料因其具有形成微机械填料/树脂基体界面结合的潜力而被研究用于牙科复合材料。这种微机械结合可以消除在口腔环境中易于水解的用于界面化学键合的填料硅烷处理的需求。在微机械结合的情况下,牙科聚合物链通过填料中的纳米尺寸通道机械地穿入(如“项链”一样)。
方法
使用非表面活性剂模板法合成的介孔二氧化硅与无孔球形二氧化硅(500nm)的组合用于制备实验性牙科复合材料。本研究中使用的多孔二氧化硅包含相互连接的孔和通道,这与含有表面孔的多孔填料不同。对这些复合材料的抗压强度、压缩模量、弯曲模量和弯曲强度进行了评估。
结果
结果表明,含有介孔和无孔填料组合的复合材料比单独含有这两种填料之一的复合材料具有更好的机械性能。
意义
结果表明,介孔和无孔材料的组合可用于制备更强的牙科材料,这些材料可能抵抗水解和磨损。