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Designer binary nanostructures toward water slipping superhydrophobic surfaces

机译:设计者的二元纳米结构,可用于滑水超疏水表面

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This report demonstrates a synthetic route for ordering a set of Au nanoparticles on the vertically aligned conducting polymer (polypyrrole) for the superhydrophobic surfaces with low water flow friction. It demonstrates how one can use polymer nanorod pillars and a variety of Au nanoparticles to generate controlled surface roughness. Synthetic strategies utilized to make such surfaces include the electrochemical polymerization of conducting polymers within the confines of anodized alumina templates and subsequent Au nanoparticle immobilization on the surface of polymer pillars. This method provides a surface that contains roughness on two independently controllable levels, say, the submicroscopic roughness from polymer pillar dimensions and the nanoscopic roughness from the appropriate size selection of An nanoparticles. With the present results, it is clearly evident that a combination of two scale roughnesses composed of nanorods and nanoparticles could be utilized for the synthesis of superhydrophobic surfaces, which mimics the lotus leaves.
机译:该报告证明了一种合成途径,该途径可在水流摩擦力低的超疏水表面上,在垂直排列的导电聚合物(聚吡咯)上订购一组金纳米颗粒。它演示了如何使用聚合物纳米棒支柱和各种Au纳米颗粒来产生受控的表面粗糙度。用于制造此类表面的合成策略包括在阳极氧化铝模板范围内进行导电聚合物的电化学聚合,以及随后将Au纳米粒子固定在聚合物支柱的表面上。该方法提供的表面包含两个独立可控水平的粗糙度,例如,来自聚合物柱尺寸的亚显微粗糙度和来自适当选择的纳米粒子尺寸的纳米粗糙度。根据目前的结果,显然可以看出,由纳米棒和纳米颗粒组成的两种氧化皮粗糙度的组合可用于合成超疏水表面,该表面模仿荷叶。

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