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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Fabrication of super-hydrophobic nickel film on copper substrate with improved corrosion inhibition by electrodeposition process
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Fabrication of super-hydrophobic nickel film on copper substrate with improved corrosion inhibition by electrodeposition process

机译:电沉积工艺改进腐蚀抑制超疏水镍膜的制造

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Inspired by the famous "lotus effect", we have fabricated the super-hydrophobic surfaces with nickel film on copper substrates using a one-step electrodeposition method. By adjusting processing time, water contact angle of as-prepared surfaces can reach as high as 160.3 +/- 1.5 degrees with small rolling angle of 3.0 +/- 0.5 degrees, showing excellent super-hydrophobicity. After the deposition of nickel coating, the pristine copper surfaces became much rough with packed cauliflower-/thorn-like clusters. This unique surface texture contributed to trapping large amount of air and forming the air cushion underneath the water droplet, which can prevent the liquids contacting the copper substrate. The examination of surface chemical compositions implied that the deposited super-hydrophobic coating consisted of nickel crystals and nickel myristate. In this research, the formation mechanism of the electrodeposited super-hydrophobicity was extensively explained based on the analyses of surface texture and surface chemistry. Moreover, the corrosion resistance of the as-fabricated super-hydrophobic surface was estimated by the potentiodynamic polarization tests as well as the electrochemical impedance spectroscopy (EIS) measurements. The results demonstrate that the super-hydrophobic nickel coating showed excellent corrosion inhibition in simulated seawater solution. The existence of the super-hydrophobic coating could be regarded as a barrier and thus provide a perfect air-liquid interface that inhibits the penetration of the corrosive ions. This facile and effective method of electrodeposition process offers a promising approach for mass production of super-hydrophobic surfaces on various metals.
机译:灵感来自着名的“莲花效应”,我们使用一步电沉积法在铜基材上用镍膜制造了超级疏水表面。通过调节处理时间,制备表面的水接触角可以高达160.3 +/- 1.5度,滚动角度为3.0 +/- 0.5度,显示出优异的超级疏水性。在镍涂层沉积之后,原始铜表面变得非常粗糙,用填充的花椰菜/刺簇状簇。这种独特的表面纹理有助于捕获大量空气并形成水滴下方的空腹,这可以防止液体接触铜基底。表面化学组合物的检查暗示沉积的超级疏水涂层由镍晶体和镍瘤组成。在该研究中,基于表面纹理和表面化学的分析,广泛地解释了电沉积超疏水性的​​形成机制。此外,通过电位偏振试验以及电化学阻抗光谱(EIS)测量估计了由制造的超疏水表面的耐腐蚀性。结果表明,超疏水镍涂层在模拟海水溶液中表现出优异的腐蚀抑制。超疏水涂层的存在可以被视为屏障,从而提供完美的空气液体界面,其抑制腐蚀离子的渗透。这种容易和有效的电沉积方法方法提供了一种有希望的批量生产各种金属的超级疏水表面。

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