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基于田口方法的β相TiZrNb合金上用于生物医学应用的TiO-NbO-ZrO纳米管的优化制备与表征

Optimized Fabrication and Characterization of TiO-NbO-ZrO Nanotubes on β-Phase TiZrNb Alloy for Biomedical Applications via the Taguchi Method.

作者信息

Qadir Muhammad, Li Yuncang, Biesiekierski Arne, Wen Cuie

机构信息

School of Engineering, RMIT University, Bundoora, Victoria 3083, Australia.

出版信息

ACS Biomater Sci Eng. 2019 Jun 10;5(6):2750-2761. doi: 10.1021/acsbiomaterials.9b00356. Epub 2019 May 22.

Abstract

The nanostructured surface modification of metallic implants is increasingly gaining attention for biomedical applications. Among such nanostructured surfaces, oxide nanotube (NT) structures have received significant consideration in the biomedical and clinical fields, particularly because of their unique biological characteristics. This experimental study is based on the optimization and characterization of TiO-NbO-ZrO nanotubes (NTs) on newly developed β phase TiZrNb alloy. The effects of the anodization process parameters on the inner diameter () of the NTs were investigated. The experiment was conducted using the Taguchi experimental design with an L (3) orthogonal array, with three control factors targeted for optimization: (i) applied voltage, (ii) water content of the electrolyte solution, and (iii) anodization time. The chemical composition, morphology, and hydrophilic properties of TiO-NbO-ZrO NTs after optimization were characterized by energy-dispersive X-ray spectroscopy (EDX), scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and water contact angle measurement. The results showed that a large of NTs was achieved using an applied voltage of 40 V, water content of 5%, and anodization time of 120 min, with the applied voltage identified as the most effective parameter for the growth of TiO-NbO-ZrO NTs based on signal-to-noise (S/N) ratio analysis. The Pareto ANOVA and confirmation test results showed that the Taguchi method was successful in optimizing the larger for NTs; moreover, the optimized nanotubular surface exhibited the highest surface roughness and an increased hydrophilic nature. The above findings may contribute to the development of high-performance nanostructured coatings for biomedical applications.

摘要

金属植入物的纳米结构表面改性在生物医学应用中越来越受到关注。在这些纳米结构表面中,氧化物纳米管(NT)结构在生物医学和临床领域受到了广泛关注,特别是由于其独特的生物学特性。本实验研究基于新开发的β相TiZrNb合金上TiO-NbO-ZrO纳米管(NTs)的优化和表征。研究了阳极氧化工艺参数对NTs内径()的影响。实验采用田口实验设计和L(3)正交阵列,针对三个控制因素进行优化:(i)施加电压,(ii)电解液的含水量,以及(iii)阳极氧化时间。通过能量色散X射线光谱(EDX)、扫描电子显微镜(SEM)、X射线光电子能谱(XPS)和水接触角测量对优化后的TiO-NbO-ZrO NTs的化学成分、形貌和亲水性能进行了表征。结果表明,在施加电压40 V、含水量5%、阳极氧化时间120 min的条件下,获得了较大内径的NTs,基于信噪比(S/N)分析,施加电压被确定为TiO-NbO-ZrO NTs生长的最有效参数。帕累托方差分析和验证试验结果表明,田口方法成功地优化了NTs的较大内径;此外,优化后的纳米管表面表现出最高的表面粗糙度和增强的亲水性。上述发现可能有助于开发用于生物医学应用的高性能纳米结构涂层。

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