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用于生物材料的含钽量不同的钛-钽-银-铂合金的纳米管形态变化

Nanotube Morphology Changes of Ti-Ta-Ag-Pt Alloys with Ta Content for Biomaterials.

作者信息

Cho Hye-Ri, Choe Han-Cheol

机构信息

Advanced Functional Surface & Biomaterials Research Lab, Department of Dental Materials & Research Center of Nano-Interface Activation for Biomaterials, College of Dentistry, Chosun University, 61452, Republic of Korea.

出版信息

J Nanosci Nanotechnol. 2021 Sep 1;21(9):4807-4812. doi: 10.1166/jnn.2021.19164.

Abstract

In this study, nanotube morphology changes of Ti-Ta-Ag-Pt alloys with Ta content for biomaterials were researched using various experimental instruments. Ti-Ta-Ag-Pt alloys were manufactured in an Ar atmosphere using a vacuum arc-melting furnace with Ta contents of 10 and 50, and then heat-treated at 1100 °C for 1 hr. Nanotube formation of Ti-Ta-Ag-Pt ( = 10, 50 wt%) alloys were performed using a DC power of 30 V in 1.0 M H₃PO₄ + 0.8 wt% NaF electrolyte solution. Surface characteristics were investigated using an optical microscope, X-ray diffractometer, field-emission scanning electron microscope, energy-dispersive X-ray spectroscopy, and Image analyzer (Image J). Ti-10Ta-Ag-Pt alloy had a needle-like structures, and Ti-Ti-50Ta-Ag-Pt showed the mixed structure (equiaxed and needle-like structures). As the Ta content increased, the -phase decreased and the -phase increased. The highly ordered nanotubes were formed on the -phase, whereas disordered nanotubes were formed on needle-like structure of -phase in Ti-10Ta-Ag-Pt alloy. As the Ta content increases, large and small nanotube diameters became smaller in size. Anatase and rutile phases were formed on the alloy surface. Ta, Ag, and Pt elements were uniformly distributed over the entire surface and at the edge or inside of the nanotube.

摘要

在本研究中,使用各种实验仪器研究了含钽生物材料Ti-Ta-Ag-Pt合金的纳米管形态变化。Ti-Ta-Ag-Pt合金在氩气气氛中使用真空电弧熔炼炉制造,钽含量分别为10和50,然后在1100℃下热处理1小时。在1.0M H₃PO₄ + 0.8wt% NaF电解液中使用30V直流电源对Ti-Ta-Ag-Pt(= 10, 50 wt%)合金进行纳米管制备。使用光学显微镜、X射线衍射仪、场发射扫描电子显微镜、能量色散X射线光谱仪和图像分析仪(Image J)研究表面特性。Ti-10Ta-Ag-Pt合金具有针状结构,Ti-Ti-50Ta-Ag-Pt呈现混合结构(等轴和针状结构)。随着钽含量增加,β相减少,α相增加。高度有序的纳米管在α相上形成,而无序纳米管在Ti-10Ta-Ag-Pt合金的β相针状结构上形成。随着钽含量增加,纳米管的大、小直径尺寸变小。合金表面形成了锐钛矿相和金红石相。钽、银和铂元素均匀分布在整个表面以及纳米管的边缘或内部。

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