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用于改善表面润湿性的钛植入物表面的纳米和微米尺度氧化图案化

Nano- and Micro-Scale Oxidative Patterning of Titanium Implant Surfaces for Improved Surface Wettability.

作者信息

Kim In-hye, Son Jun Sik, Choi Seok Hwa, Kim Kyo-han, Kwon Tae-yub

出版信息

J Nanosci Nanotechnol. 2016 Feb;16(2):1883-6. doi: 10.1166/jnn.2016.11912.

Abstract

A simple and scalable surface modification treatment is demonstrated, in which nano- and microscale features are introduced into the surface of titanium (Ti) substrates by means of a novel and eco-friendly oxidative aqueous solution composed of hydrogen peroxide (H202) and sodium bicarbonate (NaHCO3). By immersing mirror-polished Ti discs in an aqueous mixture of 30 wt% H2O2/5 wt% NaHCO3 at 23 +/- 3 degrees C for 4 h, it was confirmed that this mixture is capable of generating microscale topographies on Ti surfaces. It also simultaneously formed nanochannels that were regularly arranged in a comb-like pattern on the Ti surface, thus forming a hierarchical surface structure. Further, these nano/micro-textured Ti surfaces showed great surface roughness and excellent wettability when compared with control Ti surfaces. This study demonstrates that a H2O2/NaHCO3 mixture can be effectively utilized to create reproducible nano/microscale topographies on Ti implant surfaces, thus providing an economical new oxidative solution that may be used effectively and safely as a Ti surface modification treatment.

摘要

本文展示了一种简单且可扩展的表面改性处理方法,通过由过氧化氢(H2O2)和碳酸氢钠(NaHCO3)组成的新型环保氧化水溶液,在钛(Ti)基底表面引入纳米和微米尺度的特征。将镜面抛光的Ti圆盘浸入30 wt% H2O2/5 wt% NaHCO3的水溶液混合物中,在23±3℃下浸泡4小时,证实该混合物能够在Ti表面产生微米尺度的形貌。它还同时在Ti表面形成了呈梳状排列的规则纳米通道,从而形成分级表面结构。此外,与对照Ti表面相比,这些具有纳米/微米纹理的Ti表面表现出很大的表面粗糙度和优异的润湿性。本研究表明,H2O2/NaHCO3混合物可有效用于在Ti植入物表面创建可重复的纳米/微米尺度形貌,从而提供一种经济的新型氧化溶液,可作为Ti表面改性处理有效且安全地使用。

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