Qian Xiaojing, Tang Tao, Wang Huan, Chen Changan, Luo Junhong, Luo Deli
Institute of Materials, China Academy of Engineering Physics, Jiangyou, Mianyang 621907, China.
Materials (Basel). 2019 Oct 29;12(21):3546. doi: 10.3390/ma12213546.
Hydrophobic surfaces were successfully fabricated on pure nickel substrates by a one-step chemical etching process with different acidic solutions. The static water contact angle (SCA) of the etched Ni surfaces reached higher than 125°, showing excellent hydrophobicity. The examination of surface chemical compositions implied that there were almost no polar moieties on the surface after chemical etching, except part of the surface was oxidized. After chemical etching, the nickel surfaces became much rough with packed terrace-/crater-/thorn-like clusters. According to the analysis of surface composition and morphology, the hydrophobicity was evidently attributed to the rough microstructures on the etched Ni surface. The best hydrophobicity on Ni surface was produced with the SCAs as high as 140.0° by optimizing the etching time and etchants. The results demonstrate that it is possible to construct hydrophobic surfaces on hydrophilic substrates by tailoring the surface microstructure using a simple chemical etching process without any further hydrophobic modifications by low surface energy materials.
通过使用不同酸性溶液的一步化学蚀刻工艺,在纯镍基板上成功制备了疏水表面。蚀刻后的镍表面的静态水接触角(SCA)达到高于125°,显示出优异的疏水性。表面化学成分检查表明,化学蚀刻后表面几乎没有极性基团,除了部分表面被氧化。化学蚀刻后,镍表面变得粗糙得多,形成了堆积的梯田状/坑状/刺状簇。根据表面成分和形态分析,疏水性明显归因于蚀刻镍表面上的粗糙微观结构。通过优化蚀刻时间和蚀刻剂,镍表面产生了高达140.0°的SCA,具有最佳疏水性。结果表明,通过使用简单的化学蚀刻工艺调整表面微观结构,而无需用低表面能材料进行任何进一步的疏水改性,在亲水性基板上构建疏水表面是可能的。