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CVD Growth of Graphene on NiTi Alloy for Enhanced Biological Activity

机译:在NiTi合金上CVD生长石墨烯以增强生物活性

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摘要

From the perspective of surface modification of biomaterials, graphene is very promising because of its unique physical and chemical properties. Herein, we report direct in situ fabrication of graphene on nitinol (NiTi) shape memory alloy by chemical vapor deposition (CVD) and investigate both the growth mechanism as well as surface bioactivity of the modified alloy. Growth of the graphene layer is independent of Ni but is rather correlated with the formation of the TiC phase on the surface. Graphene nucleates and grows on this carbide layer during exposure to CH4. The graphene layer is observed to promote the osteogenesis differentiation of mesenchymal stem cells and surface bioactivity. The use of graphene as a bioactive layer is a viable approach to improving the surface properties of NiTi-based dental and orthopedic implants and components.
机译:从生物材料的表面改性的角度来看,石墨烯因其独特的物理和化学特性而非常有前途。本文中,我们报道了通过化学气相沉积(CVD)在镍钛合金(NiTi)形状记忆合金上直接原位制备石墨烯,并研究了改性合金的生长机理以及表面生物活性。石墨烯层的生长与Ni无关,但与表面TiC相的形成有关。在暴露于CH4期间,石墨烯在该碳化物层上成核并生长。观察到石墨烯层促进间充质干细胞的成骨分化和表面生物活性。石墨烯作为生物活性层的使用是改善基于NiTi的牙科和整形外科植入物和组件的表面性能的可行方法。

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