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Sol-Gel-Derived Hydroxyapatite-Carbon Nanotube/Titania Coatings on Titanium Substrates

机译:钛基底上溶胶-凝胶衍生的羟基磷灰石-碳纳米管/二氧化钛涂层

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摘要

In this paper, hydroxyapatite-carbon nanotube/titania (HA-CNT/TiO2) double layer coatings were successfully developed on titanium (Ti) substrates intended for biomedical applications. A TiO2 coating was firstly developed by anodization to improve bonding between HA and Ti, and then the layer of HA and CNTs was coated on the surface by the sol-gel process to improve the biocompatibility and mechanical properties of Ti. The surfaces of double layer coatings were uniform and crack-free with a thickness of about 7 μm. The bonding strength of the HA-CNT/TiO2 coating was higher than that of the pure HA and HA-CNT coatings. Additionally, in vitro cell experiments showed that CNTs promoted the adhesion of preosteoblasts on the HA-CNT/TiO2 double layer coatings. These unique surfaces combined with the osteoconductive properties of HA exhibited the excellent mechanical properties of CNTs. Therefore, the developed HA-CNT/TiO2 coatings on Ti substrates might be a promising material for bone replacement.
机译:在本文中,羟基磷灰石-碳纳米管/二氧化钛(HA-CNT / TiO2)双层涂层已成功开发用于生物医学应用的钛(Ti)基体上。首先通过阳极氧化开发TiO2涂层以改善HA与Ti之间的键合,然后通过溶胶-凝胶工艺在表面上涂覆HA和CNTs层,以提高Ti的生物相容性和机械性能。双层涂层的表面均匀且无裂纹,厚度约为7μm。 HA-CNT / TiO2涂层的结合强度高于纯HA和HA-CNT涂层的结合强度。此外,体外细胞实验表明,CNT促进了成骨细胞在HA-CNT / TiO2双层涂层上的粘附。这些独特的表面与HA的骨传导特性相结合,显示出CNT的出色机械性能。因此,在钛基体上开发的HA-CNT / TiO2涂层可能是用于骨替代的有前途的材料。

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