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首页> 外文期刊>Journal of Colloid and Interface Science >Fabrication of bio-inspired nitinol alloy surface with tunable anisotropic wetting and high adhesive ability
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Fabrication of bio-inspired nitinol alloy surface with tunable anisotropic wetting and high adhesive ability

机译:具有可调谐各向异性润湿和高粘合剂的生物启发镍钛合金表面的制备

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In this paper, micro/nano-scale structures were fabricated on nitinol alloy (NiTi) to realize tunable anisotropic wetting and high adhesive capability. Laser texturing and silanization process are utilized to change the morphological and chemical properties of substrates. It is noted that these treated substrates exhibit the joint characteristics of anisotropic wetting and high adhesive capability. In order to investigate the influences of laser-texturing and silanization processes on NiTi, these surfaces were evaluated using scanning electron microscope (SEM), a white light confocal microscope, X-ray photoelectron spectroscopy (XPS) and goniometer. The relationship between water volume and anisotropic wetting was also established. From the experimental testing, we can obtain the following conclusions: (1) the anisotropic wetting characterized by the difference between the water contact angles (WCAs) in the vertical and parallel directions ranges from 0 degrees to 20.3 degrees, which is far more than the value of natural rice leaves. (2) the water sliding angles (WSAs) kept stable at 180, successfully mimicking the adhesive ability of rose petals. (3) the silanization process could strengthen the hydrophobicity but weaken anisotropic wetting. These bio-inspired NiTi surfaces have a tremendous potential applications such as microfluidic devices, bio-mimetic materials fabrication and lab on chip. (C) 2018 Elsevier Inc. All rights reserved.
机译:本文在镍钛合金合金(NITI)上制造了微/纳米级结构,以实现可调各向异性润湿和高粘合剂能力。激光纹理和硅烷化工艺用于改变基材的形态学和化学性质。应注意,这些经处理的底物表现出各向异性润湿和高粘合剂能力的关节特征。为了研究激光纹理和硅烷化过程对NITI的影响,使用扫描电子显微镜(SEM),白光共焦显微镜,X射线光电子能谱(XPS)和测筒仪评估这些表面。还建立了水体积和各向异性润湿之间的关系。从实验测试中,我们可以获得以下结论:(1)各向异性润湿,其特征在于垂直和平行方向上的水接触角(WCA)之间的差异从0度到20.3度,这远远超过天然米叶的价值。 (2)水滑动角度(WSA)在180处保持稳定,成功地模仿玫瑰花瓣的粘合能力。 (3)硅烷化方法可以增强疏水性,但削弱各向异性润湿性。这些生物启发的NITI表面具有巨大的潜在应用,例如微流体装置,生物模拟材料制造和芯片实验室。 (c)2018 Elsevier Inc.保留所有权利。

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