首页> 外文会议>Materials Research Society Meeting >Self-protective Oxide Nano-Coatings for Enhanced Surface Biocompatibility of Titanium
【24h】

Self-protective Oxide Nano-Coatings for Enhanced Surface Biocompatibility of Titanium

机译:用于增强钛表面生物相容性的自保护氧化物纳米涂层

获取原文

摘要

The biocompatibility of an implant material depends on the bulk physical properties in addition to the surface properties. In biomedical engineering and industry Ti and Ti-alloys are very popular biological implant material for their bulk physical properties and strength to weight ratio resembling those of nature bone. It is possible to modify the surface properties of titanium for enhanced surface biocompatibility. The main objective of the this study is to engineer a smart Ti-based prosthesis surface by self induced chemically modified titanium oxide nano-film by the chemical mechanical polishing process (CMP). This new process applied on bio-implants aims at significantly reducing the out-diffusion of Ti and other metallic impurities from prosthesis in contact with body fluids and tissue and simultaneously enhancing the surface mechanical, chemical and biological properties. CMP technique enables the growth of a thicker and denser self-protective native oxide on Ti and Ti alloy samples, while simultaneously inducing a controlled surface roughness. It is demonstrated that the Ti based dental implants with self-protective oxide induced surfaces help minimize chemical and bacterial reactivity in addition to Ti ion dissolution while promoting their biocompatibility through surface patterning. The studied self-protective oxide films can also be utilized for many additional applications including bio-sensors.
机译:植入物材料的生物相容性除了表面性质之外还取决于散装物理性质。在生物医学工程和工业中,Ti和Ti合金是非常受欢迎的生物植入物材料,用于其散装物理性质和力量与自然骨骼相似的重量比。可以改变钛的表面性质以增强表面生物相容性。本研究的主要目的是通过化学机械抛光工艺(CMP)通过自诱导的化学改性钛氧化钛纳米膜来工程智能TI基假体表面。在生物植入物上施加的这种新方法旨在显着降低Ti和其他金属杂质的外扩散与体液和组织接触的假体,同时增强表面机械,化学和生物学性质。 CMP技术能够在Ti和Ti合金样品上生长较厚和更浓的自保护氧化物,同时诱导受控表面粗糙度。结果证明,除了通过表面图案化的同时,除了Ti离子溶解之外,还有助于最小化化学和细菌反应性,并通过表面图案化促进其生物相容性。研究的自保护氧化物膜也可以用于许多额外的应用,包括生物传感器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号