Mehrali Mehdi, Moghaddam Ehsan, Seyed Shirazi Seyed Farid, Baradaran Saeid, Mehrali Mohammad, Latibari Sara Tahan, Metselaar Hendrik Simon Cornelis, Kadri Nahrizul Adib, Zandi Keivan, Osman Noor Azuan Abu
Department of Mechanical Engineering and Center of advanced Material, University of Malaya, Kuala Lumpur, Malaysia.
Tropical Infectious Diseases Research and Education Centre (TIDREC), Department of Medical Microbiology, Faculty of Medicine, University of Malay, Kuala Lumpur, Malaysia.
PLoS One. 2014 Sep 17;9(9):e106802. doi: 10.1371/journal.pone.0106802. eCollection 2014.
Calcium silicate (CaSiO3, CS) ceramic composites reinforced with graphene nanoplatelets (GNP) were prepared using hot isostatic pressing (HIP) at 1150°C. Quantitative microstructural analysis suggests that GNP play a role in grain size and is responsible for the improved densification. Raman spectroscopy and scanning electron microscopy showed that GNP survived the harsh processing conditions of the selected HIP processing parameters. The uniform distribution of 1 wt.% GNP in the CS matrix, high densification and fine CS grain size help to improve the fracture toughness by ∼130%, hardness by ∼30% and brittleness index by ∼40% as compared to the CS matrix without GNP. The toughening mechanisms, such as crack bridging, pull-out, branching and deflection induced by GNP are observed and discussed. The GNP/CS composites exhibit good apatite-forming ability in the simulated body fluid (SBF). Our results indicate that the addition of GNP decreased pH value in SBF. Effect of addition of GNP on early adhesion and proliferation of human osteoblast cells (hFOB) was measured in vitro. The GNP/CS composites showed good biocompatibility and promoted cell viability and cell proliferation. The results indicated that the cell viability and proliferation are affected by time and concentration of GNP in the CS matrix.
采用热等静压(HIP)在1150°C下制备了用石墨烯纳米片(GNP)增强的硅酸钙(CaSiO3,CS)陶瓷复合材料。定量微观结构分析表明,GNP在晶粒尺寸方面发挥作用,并有助于提高致密化程度。拉曼光谱和扫描电子显微镜表明,GNP在所选HIP工艺参数的苛刻加工条件下得以留存。与不含GNP的CS基体相比,CS基体中1 wt.% GNP的均匀分布、高致密化和细小的CS晶粒尺寸有助于使断裂韧性提高约130%、硬度提高约30%、脆性指数提高约40%。观察并讨论了由GNP引起的诸如裂纹桥接、拔出、分支和偏转等增韧机制。GNP/CS复合材料在模拟体液(SBF)中表现出良好的磷灰石形成能力。我们的结果表明,添加GNP会降低SBF中的pH值。体外测量了添加GNP对人成骨细胞(hFOB)早期黏附与增殖的影响。GNP/CS复合材料表现出良好的生物相容性,并促进了细胞活力和细胞增殖。结果表明,细胞活力和增殖受CS基体中GNP的时间和浓度影响。