Magnetic and Dielectric Properties of Hybrid Nanocomposites of Biologically Extracted Hydroxyapatite/Hematite/Silicon Dioxide for Potential Use in Bone Replacement Applications

材料科学 赤铁矿 纳米复合材料 二氧化硅 多孔性 抗压强度 生物材料 电介质 复合材料 化学工程 矿物学 纳米技术 冶金 化学 光电子学 工程类
作者
Asma M. Alturki,Ayshah S. Alatawi,Dalia E. Abulyazied,H. M. Abomostafa,G. M. El komy,R. Alamlah,Mohamed Taha,Rasha A. Youness
出处
期刊:ECS Journal of Solid State Science and Technology [Institute of Physics]
卷期号:12 (8): 083001-083001 被引量:14
标识
DOI:10.1149/2162-8777/ace994
摘要

Hydroxyapatite (HA) is known to be an attractive biomaterial for use in orthopedic and dental applications. Notably, acquiring HA from natural sources is an excellent step toward doing so affordably while also reducing waste. Therefore, in this study, HA was obtained from camel bones and then mixed in different proportions with silicon dioxide (SiO 2 ) and hematite ( α -Fe 2 O 3 ) in order to obtain nanocomposites with distinct physical, tribo-mechanical, electrical, magnetic and biological properties. The produced powders were then examined by SEM and XRD techniques. Additionally, measurements were made of their dielectric, physical, tribo-mechanical, magnetic, and antimicrobial properties. The results revealed that successive addition of SiO 2 and α -Fe 2 O 3 reduced the porosity of the tested samples by about 3.26, 19.56, 33.69 and 51.08% which is very close to the porosity value of cortical bone. Importantly, the compressive strength of the sample with the highest percentages of SiO 2 and α -Fe 2 O 3 was 102 MPa making it similar to that of cortical bone. Also, the addition of SiO 2 and α -Fe 2 O 3 to BHA reduced its wear rate by 0.47, 13.09, 15.47, and 21.90%. Furthermore, the presence of Fe 2 O 3 improved the magnetic and antimicrobial properties of the tested samples. The latter findings could be useful for accelerating bone healing.
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