Univ. Nice Sophia Antipolis, CNRS, LPMC, UMR 7336, 06100 Nice, France.
Univ. Nice Sophia Antipolis, Centre Commun de Microscopie Appliquée (CCMA), 06100 Nice, France.
J Colloid Interface Sci. 2016 Mar 15;466:413-24. doi: 10.1016/j.jcis.2015.12.029. Epub 2015 Dec 18.
Controlling the formation of surface nanostructures and nanotubes in particular is extremely important for various applications in electronic devices for energy systems, biosensing but also for the control of water adhesion. Here, we use a direct (without template) electropolymerization process to produce vertically aligned nanotubes. Different monomers are tested as well as different solvents, electrolytes and electrodeposition methods. We show that naphtho[2,3-b]thieno[3,4-e][1,4]dioxine (NaphDOT) is the best monomer to obtain these nanotubes while dichloromethane has to be used as solvent for their formation. The surfaces with nanotubes display both extremely high apparent contact angles (θ(w)=142.7°) and high water adhesion even if the nanotubes are made of intrinsically hydrophilic polymers and are not densely packed.
控制表面纳米结构和纳米管的形成对于能源系统、生物传感等电子设备中的各种应用以及对水附着的控制极为重要。在这里,我们使用直接(无模板)电聚合过程来生产垂直排列的纳米管。我们测试了不同的单体以及不同的溶剂、电解质和电沉积方法。我们表明萘并[2,3-b]噻吩[3,4-e][1,4]二恶嗪(NaphDOT)是获得这些纳米管的最佳单体,而二氯甲烷必须用作其形成的溶剂。即使纳米管由固有亲水聚合物制成且未紧密堆积,具有纳米管的表面也显示出极高的表观接触角(θ(w)=142.7°)和高的水附着力。