Alrahlah Ali, Khan Rawaiz, Al-Odayni Abdel-Basit, Saeed Waseem Sharaf, Bautista Leonel S, Vohra Fahim
Restorative Dental Sciences Department, College of Dentistry, King Saud University, Riyadh 11545, Saudi Arabia.
Engineer Abdullah Bugshan Research Chair for Dental and Oral Rehabilitation, College of Dentistry, King Saud University, Riyadh 11545, Saudi Arabia.
Polymers (Basel). 2020 Dec 17;12(12):3025. doi: 10.3390/polym12123025.
Graphene and graphene oxide based nanomaterials have attained immense significance in research because of their matchless physiochemical characteristics. Although potential biomedical applications of graphene have been extensively studied, however, dentistry related applications were rarely explored. This study aimed to investigate the effect of various percentages of surface modified reduce graphene oxide (S-rGO) in combination with SiO nanoparticles (bulk filler) on numerous physio-mechanical characteristics of acrylate-based (BisGMA/TEGDMA: 1:1 by wt.) composites. BisGMA/TEGDMA reinforced with 30 wt.% surface modified fumed-silica (S-A200) was considered as control group (base composite). Various concentrations (0, 0.5, 1, 2, 4 wt.%) of S-rGO were incorporated into the base composite via solution casting and high-speed mixing. The obtained composites were characterized for rheological properties before curing by using Rheometer (Anton Paar, USA) in the oscillatory mode under a frequency sweep over a range of angular frequency of 0.1-100 rad/s at 25 °C. The degree of conversion (DC) was measured by using Fourier transform infrared spectroscopy (FTIR). A Nano-indentation test was carried out to obtain nano-hardness and elastic modulus. The surface roughness was measured by optical microscope (Bruker), 3D non-contact surface profilometer. The structural and morphological properties were studied by using Scanning Electron Microscopy (SEM). The mean and standard deviation were calculated and a simple mean comparisons test was performed for comparison using SPSS. The results revealed that the addition of a tiny proportion of S-rGO considerably increased the nano-indentation hardness, elastic modulus and DC. Conversely, a gradual reduction in viscosity was observed with increasing S-rGO concentration. The study demonstrates that a small fraction of S-rGO in combination with SiO could enhance physical, mechanical and rheological properties of acrylate based composites. Thus S-rGO/SiO combination could be used as a potential hybrid filler for dental nanocomposites.
基于石墨烯和氧化石墨烯的纳米材料因其无与伦比的物理化学特性在研究中具有极其重要的意义。尽管石墨烯在生物医学方面的潜在应用已得到广泛研究,然而,与牙科相关的应用却很少被探索。本研究旨在探究不同百分比的表面改性还原氧化石墨烯(S-rGO)与二氧化硅纳米颗粒(块状填料)相结合,对丙烯酸酯基(双酚A缩水甘油醚/三乙二醇二甲基丙烯酸酯:重量比1:1)复合材料多种物理机械性能的影响。用30重量%的表面改性气相二氧化硅(S-A200)增强的双酚A缩水甘油醚/三乙二醇二甲基丙烯酸酯被视为对照组(基础复合材料)。通过溶液浇铸和高速混合,将不同浓度(0、0.5、1、2、4重量%)的S-rGO加入到基础复合材料中。在25℃下,使用流变仪(美国安东帕公司)在振荡模式下,在0.1 - 100弧度/秒的角频率范围内进行频率扫描,对固化前的复合材料进行流变性能表征。使用傅里叶变换红外光谱(FTIR)测量转化率(DC)。进行纳米压痕试验以获得纳米硬度和弹性模量。通过光学显微镜(布鲁克)、3D非接触表面轮廓仪测量表面粗糙度。使用扫描电子显微镜(SEM)研究结构和形态性能。计算平均值和标准差,并使用SPSS进行简单的均值比较检验以进行比较。结果表明,添加少量的S-rGO可显著提高纳米压痕硬度、弹性模量和DC。相反,随着S-rGO浓度的增加,观察到粘度逐渐降低。该研究表明,少量的S-rGO与二氧化硅相结合可增强丙烯酸酯基复合材料的物理、机械和流变性能。因此,S-rGO/二氧化硅组合可作为牙科纳米复合材料的潜在混合填料。