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Investigation of mechanical properties and morphology of hydrothermally manufactured titanium dioxide nanostructured surfaces

机译:水热制备的二氧化钛纳米结构表面的力学性能和形态研究

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摘要

The hydrothermal process is a commonly used technique for manufacturing nanoparticles and nanostructured surfaces, and has been used to manufacture titanium dioxide (TiO2) nanostructured bactericidal surfaces. This work examines the mechanical properties, surface morphology and stability of the TiO2surface as a function of NaOH concentration. At NaOH concentrations below 1.50 M, individual pillar-like nanostructures with high Young’s modulus were formed. When NaOH concentration was increased above 1.50 M, nanostructure tips fused together to form a large interconnected mesh-like network. This mesh-like structure caused a reduction in the Young’s modulus and hardness of the titanium dioxide surface. The mechanical properties of the TiO2remained constant over a 6 month period, indicating stability of the nanostructures. This work demonstrates the synthesis of stable TiO2nanostructured surfaces of different Young’s modulus, hardness and surface morphology using the hydrothermal method, with potential application in orthopedic implants.
机译:水热法是制造纳米颗粒和纳米结构表面的常用技术,并且已经用于制造二氧化钛(TiO2)纳米结构的杀菌表面。这项工作研究了NaOH浓度对TiO2表面的机械性能,表面形态和稳定性的影响。在NaOH浓度低于1.50 M时,形成了具有高杨氏模量的单个柱状纳米结构。当NaOH浓度增加到1.50 M以上时,纳米结构尖端融合在一起,形成一个大型的互连网状网络。这种网状结构导致二氧化钛表面的杨氏模量和硬度降低。 TiO 2的机械性能在6个月内保持恒定,表明纳米结构的稳定性。这项工作证明了使用水热法合成具有不同杨氏模量,硬度和表面形态的TiO2纳米结构的稳定表面,并有望在整形外科植入物中应用。

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