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Optimum temperature and chlorine ion concentration for hydrogen peroxide treatment of titanium dental implant material

机译:钛牙科植入物材料过氧化氢处理的最佳温度和氯离子浓度

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Hydrogen peroxide treatment is a cost-effective and simple method to improve the bioactivity of titanium implants. In this study, the effects of chloride ion concentration and temperature of hydrogen peroxide on the surface treatment of titanium were investigated using X-ray diffractometry (XRD), Field Emission-Scanning Electron Microscopy (FESEM), and tests in order to determine wettability and apatite forming ability. The results showed that at the lower temperatures of treatment (60?°C), hydrogen peroxide corroded the formed titania layer and the post-heat treatment resulted in rutile formation on the surface of titanium. At higher temperatures of treatment (100?°C), a uniform and crack-free anatase layer was formed on the surface of titanium, leading to the improvement of superhydrophilicity and the apatite forming ability of titanium. However, these properties were affected by increasing the chloride concentration of hydrogen peroxide. At appropriate conditions, titanium dental implant surfaces could be treated effectively using hydrogen peroxide, such that the time of treatment could be reduced to 5?h.
机译:过氧化氢处理是一种成本效益和简单的方法,可改善钛植入物的生物活性。在该研究中,使用X射线衍射法(XRD),场发射扫描电子显微镜(FESEM)研究了氯离子浓度和过氧化氢的温度对钛的表面处理的影响,并进行测试,以确定润湿性和磷灰石形成能力。结果表明,在治疗的较低温度(60℃),过氧化氢腐蚀的形成的二氧化钛层和后热处理导致钛的表面上的金红石形成。在较高温度的处理(100?℃)下,在钛的表面上形成均匀和无裂缝的锐钛矿层,导致超细管性的提高和钛的磷灰石形成能力。然而,通过增加过氧化氢的氯化物浓度来影响这些性质。在适当的条件下,可以使用过氧化氢有效地处理钛牙科植入表面,使得治疗时间可以减少到5μl。

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