Pengaruh Nanosilika terhadap Kekerasan dan Porositas Nanokomposit HA-SiO2 Berbasis Batuan Onyx Bojonegoro
Abstract
Hydroxyapatite (HA) is one of bioceramics which used in many biomedic applications. However, HA has poor mechanical properties. HA has be composited with material which has a good mechanical properties, such as nanosilica. In this study, synthesis HA was prepared by co-precipitation method. Base material to synthesis HA is onyx rock from Bojonegoro which contain 94.33 % Ca. While phosphate obtainable from Ammonium Dihydrogen Phosphate. The vickers hardness result using micro hardness vikers show that adding nanosilica is influence the mechanical properties of HA. The value of vikers hardness at adding nanosilica 10, 20, 30% respectively are 38.2; 42.3; 43.1 HVN while the porosity are 44.4; 40.7; 39.3 %.
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Bhattacharya (2014). Study on Structural, Mechanical and Functional Properties of Polyester Silica Nanocomposite Fabric. Int. J. Pure Appl. Sci. Technol., 21(1) (2014), pp. 43-52
D. W. Callister (2010). Fundamental of Materials Science and engineering. The University of Utah: Department of Metallurgical Engineering.
Chiara (2012). Nanostructured Biomaterials for Tissue Engineered Bone Tissue Reconstruction. Int. J. Mol. Sci. 2012, 13, 737-757
Darwis (2008). Sintesis Dan Karakterisasi Komposit Hidroksiapatit (Ha) Sebagai Graft Tulang Sintetik. Jurnal Ilmiah Aplikasi Isotop dan Radiasi A Scientific Journal for The Applications of Isotopes and Radiation. Vol. 4 No. 2 Desember 2008
M. Ibrahim (2011). Chemical characterization of some substituted hydroxyapatites. Chemistry Central Journal , 5:74
T. Kokubo (2008). Bioceramics and Their Clinical Applications.Cambrigde England dan Boca Raton. USA: Woodhead Publishing LimiteddanCRC Press LLC
F. Kusumawati (2014). Pengaruh Lama Sonikasi Pada Sintesis Nano Hidroksiapatit Dari Batuan Calcite Druju Malang Dengan Metode.
Liu (2013). Effect of Filler Ratio on Properties of Nano-hydroxyapatite/SiO2 Based Bioactive Dental Resin Composites. Materials Science Forum. Vols. 745-746 (2013) pp 466-472
Munasir (2012). Uji Xrd Dan Xrf Pada Bahan Meneral Batuan Dan Pasir) Sebagai Sumber Material Cerdas (CaCO3 Dan SiO2). Jurnal Penelitian Fisika dan Aplikasinya (JPFA). Vol 2 No1
Munasir (2013). Pengaruh Molaritas Naoh Pada Sintesis Nanosilika Berbasis Pasir Bancar Tuban. Jurnal Penelitian Fisika Dan Aplikasinya (JPFA). Vol 3 No 2, Nopember 2013 ISSN: 2087-9946
Ningsih (2014). Sintesis Hidroksiapatit Dari Cangkang Kerang Kepah (Polymesoda Erosa) Dengan Variasi Waktu Pengadukan. JKK,Tahun 2014,Volum 3(1), halaman 22-26
J. Park (2008). Bioceramics Properties, Characterizations, and Applications. USA : University of Iowa
Rahman (2014). One-pot synthesis of hydroxyapatite–silica nanopowder composite for hardness enhancement of glass ionomer cement (GIC). Bull. Mater. Sci., 37, 213–219.
A. Rahmawati, N. Z. Ilmi, H. Seyawan, Affandi, Samsudin. 2012. Sintesis Hydroxiapatite Berukuran Nano dengan Metode Elektrokimia Menggnakan Pulse Direct Current (Pdc) sebagai Bioimplan Tulang dan Gigi. Jurnal Teknik Pomfits. 1, 1-4.
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