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Fabrication and characterization of oxygen-diffused titanium for biomedical applications.

机译:生物医学应用中氧扩散钛的制备和表征。

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Although titanium has been successful as an orthopedic or dental implant material, performance problems still persist concerning implant-bone interfacial bonding strength. In this study a novel oxygen-diffused titanium (ODTi), fabricated by introducing oxygen into the titanium crystal lattice by thermal treatment, was investigated. The fabricated material is the result of a surface modification made on commercially pure titanium (cp Ti) previously coated with poly(vinyl alcohol) (PVA) by means of a thermal treatment performed at 700 degrees C in an ultra-pure argon atmosphere. The thermal treatment at 700 degrees C led to the formation of an anatase TiO(2) film on the cp Ti surface and a concentration gradient of oxygen into titanium. The surface of the fabricated ODTi consisted of an outer nanometric layer of anatase TiO(2) and an inner nanometric layer of Ti(2)O(x) (x<1) in which the oxygen is in solid solution with the titanium metal. It was found that ODTi possesses in vitro apatite formation ability after being soaked into simulated body fluid (SBF) solution. This apatite formation ability is attributed to the presence of the anatase TiO(2) outermost surface layer and to abundant hydroxyl groups (-OH) formed on the ODTi surface after immersion in SBF.
机译:尽管钛已经成功地用作骨科或牙科植入物材料,但是关于植入物与骨的界面结合强度仍然存在性能问题。在这项研究中,研究了一种新型的氧扩散钛(ODTi),其是通过热处理将氧引入钛晶格中制成的。所制造的材料是通过在超纯氩气氛中在700摄氏度下进行的热处理对预先涂有聚乙烯醇(PVA)的商业纯钛(cp Ti)进行表面改性的结果。在700摄氏度下进行的热处理导致在cp Ti表面上形成了锐钛矿型TiO(2)膜,并且氧的浓度成钛。制成的ODTi的表面由锐钛矿型TiO(2)的外纳米层和Ti(2)O(x)(x <1)的内纳米层组成,其中氧与钛金属固溶。发现ODTi浸入模拟体液(SBF)溶液后具有体外磷灰石形成能力。磷灰石的形成能力归因于锐钛矿型TiO(2)最外层表面的存在以及浸入SBF后ODTi表面上形成的大量羟基(-OH)。

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