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Preparation Of Bioactive Titania Films On Titanium Metal Via Anodic Oxidation

机译:阳极氧化法在钛金属上制备生物活性二氧化钛膜

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Objectives. To research the crystal structure and surface morphology of anodic films on titanium metal in different electrolytes under various electrochemical conditions and investigate the effect of the crystal structure of the oxide films on apatite-forming ability in simulated body fluid (SBF). Methods. Titanium oxide films were prepared using an anodic oxidation method on the surface of titanium metal in four different electrolytes: sulfuric acid, acetic acid, phosphoric acid and sodium sulfate solutions with different voltages for 1 min at room temperature. Results. Anodic films that consisted of rutile and/or anatase phases with porous structures were formed on titanium metal after anodizing in H_2SO_4 and Na_2SO_4 electrolytes, while amorphous titania films were produced after anodizing in CH_3COOH and H_3PO_4 electrolytes. Titanium metal with the anatase and/or rutile crystal structure films showed excellent apatite-forming ability and produced a compact apatite layer covering all the surface of titanium after soaking in SBF for 7 d, but titanium metal with amorphous titania layers was not able to induce apatite formation. Significance. The resultant apatite layer formed on titanium metal in SBF could enhance the bonding strength between living tissue and the implant. Anodic oxidation is believed to be an effective method for preparing bioactive titanium metal as an artificial bone substitute even under load-bearing conditions.
机译:目标。研究了在各种电化学条件下不同电解质下钛金属阳极膜的晶体结构和表面形态,并研究了氧化膜的晶体结构对模拟体液(SBF)中磷灰石形成能力的影响。方法。使用阳极氧化方法,在室温下,在四种不同电解质(硫酸,乙酸,磷酸和硫酸钠溶液)中以不同电压在钛金属表面上制备氧化钛膜1分钟。结果。在H_2SO_4和Na_2SO_4电解质中进行阳极氧化后,在钛金属上形成由具有金红石相和/或具有多孔结构的锐钛矿相组成的阳极膜,而在CH_3COOH和H_3PO_4电解质中进行阳极氧化后生成非晶态的二氧化钛膜。具有锐钛矿和/或金红石型晶体结构膜的钛金属显示出优异的磷灰石形成能力,并在SBF中浸泡7 d后产生了致密的磷灰石层,覆盖了钛的所有表面,但是具有无定形二氧化钛层的钛金属无法诱导磷灰石的形成。意义。 SBF中钛金属上形成的磷灰石层可以增强活体组织与植入物之间的结合强度。阳极氧化被认为是即使在承重条件下也能制备生物活性钛金属作为人造骨替代品的有效方法。

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