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Titanium Anodic Oxidation: A Powerful Technique for Tailoring Surfaces Properties for Biomedical Applications

机译:钛阳极氧化:一种用于剪裁生物医学应用的表面性质的强大技术

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Titanium biomaterials are widely employed to produce medical components, such as prostheses, plates and screws or dental implants. Their diffusion is ascribed to the broad spectrum of optimal mechanical and surface properties, such as the corrosion resistance and correlated low ionic release, the bio-compatibility, and especially, the enhanced osseointegration that can be achieved by surface modifications, particularly by suitable anodizing treatments. The anodic oxidation technique consists of polarizing titanium by imposing a current flow between the titanium specimen and a counterelectrode. The process parameters which most determine the properties of the growing oxide are the electrochemical ones as well as the electrolyte specifications and, of course, the composition of the metal itself and its surface conditions. Tuning the operating process parameters it is possible to obtain TiO_2 films that differ in terms of thickness, ranging from thin colored films up to complex micrometric thick ones; morphologies, from smooth to nanotubolar surfaces; oxide structures - from amorphous to anatase and rutile; and compositions. A precise and robust control of the anodizing process is of fundamental importance in tailoring properties of TiO_2 surfaces for biomedical applications.
机译:钛生物材料广泛用于生产医疗组件,例如假体,板材和螺钉或牙科植入物。它们的扩散归因于广谱的最佳机械和表面性质,例如耐腐蚀性和相关的低离子释放,生物相容性,尤其是通过表面修饰可以实现的增强的骨整合,特别是通过合适的阳极氧化处理来实现。阳极氧化技术由抗钛样品和抗衡电极之间的电流施加电流来组成偏振钛。最多地确定生长氧化物的性质的过程参数是电化学和电解质规格,当然,金属本身的组成及其表面条件。调整操作过程参数可以获得在厚度方面不同的TiO_2薄膜,从薄的彩色薄膜的范围内达到复杂的微米厚度;形态学,从光滑到纳米摩尔表面;氧化物结构 - 从无定形到锐钛矿和金红石;和组成。对阳极氧化过程的精确和稳健控制对于剪裁TiO_2表面的剪裁性质是基本的重要性,用于生物医学应用。

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