Zhang Xiao, Wan Yi, Ren Bing, Wang Hongwei, Yu Mingzhi, Liu Anqi, Liu Zhanqiang
Key Laboratory of High Efficiency and Clean Manufacturing, School of Mechanical Engineering, Shandong University, Jinan 250061, China.
National Demonstration Center for Experimental Mechanical Engineering Education, School of Mechanical Engineering, Shandong University, Jinan 250061, China.
Micromachines (Basel). 2020 Mar 17;11(3):316. doi: 10.3390/mi11030316.
The superhydrophobic surface has a great advantage of self-cleaning, inhibiting bacterial adhesion, and enhancing anticoagulant properties in the field of biomedical materials. In this paper, a superhydrophobic surface was successfully prepared on titanium alloy via high-speed micro-milling, anodic oxidation and fluoroalkylsilane modification. The surface morphology was investigated by scanning electron microscope and a laser scanning microscope. The surface wettability was investigated through the sessile-drop method. Firstly, regular microgrooves were constructed by micro-milling. Then, nanotube arrays were fabricated by anodic oxidation. Afterwards, fluoroalkylsilane was used to self-assemble a monolayer on the surface with a composite micro/nanostructure. Compared to polished titanium samples, the modified samples exhibited superhydrophobic properties with the water contact angle (CA) of 153.7° and the contact angle hysteresis of 2.1°. The proposed method will provide a new idea for the construction of superhydrophobic titanium surgical instruments and implants in the future.
超疏水表面在生物医学材料领域具有自清洁、抑制细菌粘附和增强抗凝性能等巨大优势。本文通过高速微铣削、阳极氧化和氟代烷基硅烷改性,成功在钛合金上制备了超疏水表面。利用扫描电子显微镜和激光扫描显微镜研究了表面形貌。通过静滴法研究了表面润湿性。首先,通过微铣削构建规则的微槽。然后,通过阳极氧化制备纳米管阵列。之后,使用氟代烷基硅烷在具有复合微/纳米结构的表面自组装单层。与抛光钛样品相比,改性样品表现出超疏水性能,水接触角(CA)为153.7°,接触角滞后为2.1°。所提出的方法将为未来构建超疏水钛手术器械和植入物提供新思路。