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A Comprehensive Review on Novel Graphene-Hydroxyapatite Nanocomposites For Potential Bioimplant Applications

机译:新型石墨烯-羟基磷灰石纳米复合材料在生物植入物中的应用综述

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摘要

The advancements in medical treatment necessitated the development of advanced bio-implant materials for hard tissue replacement and bone regeneration. Hydroxyapatite (HA), an extreme bioresorbable material having physicochemical similarities with natural bone, seems to be a good bioimplant. Still, the ineffective mechanical properties, viz. fracture toughness, wear resistance, and tensile strength, restrict its practical utility in bioimplants. Recently, graphene-HA nanocomposites have been explored for potential bioimplant applications ascribed to their superior biocompatibility, bioactivity, osteoconductivity, and enhanced mechanical properties. The huge surface area with a two-dimensional sheet structure facilitates graphene’s strong integration with HA, thus enhancing mechanical properties. These enhanced mechanical properties of graphene-HA nanocomposite are chiefly attributed to the pull-out, ridge growth, crack deflection, and grain bridging characteristics exhibited by graphene filler in the HA matrix. Further, graphene is neutral and biocompatible, thus improving the graphene-HA nanocomposite‘s biocompatibility. These qualities made this nanocomposite a rising star among bio-ceramic implant materials. This review presents the current scenario on the synthesis and mechanical and biological properties of gra-phene-hydroxyapatite nanocomposite, which seems to be a propitious material for implants in orthopaedic applications.
机译:进步的医疗需要先进bio-implant材料的发展对硬组织替代和骨骼再生。bioresorbable材料在物理化学相似之处与自然骨,似乎是一个好bioimplant。机械性能,viz.断裂韧性,耐磨,抗拉强度,限制它在bioimplants实用性。graphene-HA纳米复合材料已经探索了可能归因于bioimplant应用程序他们优良的生物相容性,生物活性,osteoconductivity,和增强的机械属性。二维表结构促进石墨烯的强劲与HA的集成,因此提高机械性能。力学性能graphene-HA主要归因于纳米复合材料撤军,脊增长、裂纹偏转和粮食所展现出来的过渡性特征石墨烯填料在HA矩阵。石墨烯是中性和生物相容性,因此改善graphene-HA纳米复合材料生物相容性。纳米复合材料bio-ceramic之间的一颗冉冉升起的新星植入材料。当前场景的合成和机械和生物的特性gra-phene-hydroxyapatite纳米复合材料,似乎是一个吉祥的植入材料骨科应用程序。

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  • 来源
    《Chemistry Select》 |2023年第8期|共19页
  • 作者单位

    Dept. of Mechanical Engineering, Acharya Nagarjuna University, Guntur, Andhra Pradesh, 522510, India;

    Dept. of Mechanical Engineering, RVR & JC College of Engineering, Guntur, Andhra Pradesh, 522019, India;

    Dept. of Nanotechnology, Acharya Nagarjuna University, Guntur, Andhra Pradesh, 522510, India;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
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