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Nano-porous thermally sintered nano silica as novel fillers for dental composites

机译:纳米多孔热烧结纳米二氧化硅作为牙科复合材料的新型填料

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摘要

Objectives. The study evaluates properties of an experimental dental composite consisting of a porous thermally sintered nano-silica as filler. The properties are compared with those of an experimental composite containing micro fillers and a commercially available nano-composite, Filtek Supreme® Translucent. Different models are used to predict the elastic modulus and strength of the composites. Methods. Nano-silica with primary particles of 12 nm was thermally sintered to form nanoporous filer particles. The experimental composites were prepared by incorporating 70 wt.% of the fillers into a mixture of Bis-GMA and TEGDMA as matrix phase. Having added photoinitiator system the composites were inserted into the test molds and light-cured. The microfiller containing composites were also prepared using micron size glass fillers. Degree of conversion (DC%) of the composites was measured using FTIR spectroscopy. Diametral tensile strength (DTS), flexural strength, flexural modulus and fracture toughness were measured. SEM was utilized to study the cross section of the fractured specimens. The surface topography of the specimens was investigated using atomic force microscopy (AFM). The specific surface area of the sintered nano silica was measured using BET method. The data were analyzed and compared by ANOVA and Tukey HSD tests (significance level = 0.05). Results. The results showed improvements in flexural modulus and fracture toughness of the composites containing sintered filler. AFM revealed a lower surface roughness for sintered silica containing composites. No significant difference was observed between DTS, DC%, and flexural strength of the sintered nanofiller composite and the Filtek Supreme®. The results also showed that the modulus of the composite with sintered filler was higher than the model prediction. Significance. The thermally sintered nano-porous silica fillers significantly enhanced the mechanical properties of dental composites introducing a new approach to develop materials with improved properties.
机译:目标。该研究评估了由多孔热烧结纳米二氧化硅作为填充剂组成的实验牙科复合材料的性能。将这些性能与包含微填料和市售纳米复合材料FiltekSupreme®Translucent的实验复合材料的性能进行了比较。使用不同的模型来预测复合材料的弹性模量和强度。方法。将具有12 nm初级粒子的纳米二氧化硅进行热烧结,以形成纳米多孔填料粒子。通过将70重量%的填料掺入作为基质相的Bis-GMA和TEGDMA的混合物中来制备实验复合材料。加入光引发剂体系后,将复合材料插入测试模具中并进行光固化。还使用微米尺寸的玻璃填料制备了包含微填料的复合材料。使用FTIR光谱法测量复合材料的转化度(DC%)。测量了径向拉伸强度(DTS),弯曲强度,弯曲模量和断裂韧性。 SEM被用来研究断裂样品的横截面。使用原子力显微镜(AFM)研究了样品的表面形貌。使用BET法测量烧结的纳米二氧化硅的比表面积。通过ANOVA和Tukey HSD测试对数据进行分析和比较(显着性水平= 0.05)。结果。结果表明,含有烧结填料的复合材料的弯曲模量和断裂韧性得到改善。原子力显微镜显示含二氧化硅的复合材料的烧结后表面粗糙度较低。烧结的纳米填料复合材料与FiltekSupreme®的DTS,DC%和抗弯强度之间没有发现显着差异。结果还表明,具有烧结填料的复合材料的模量高于模型预测值。意义。热烧结的纳米多孔二氧化硅填料显着增强了牙科复合材料的机械性能,从而引入了一种开发具有改进性能的材料的新方法。

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