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Surface Nanostructures Formed by Phase Separation of Metal Salt–Polymer Nanocomposite Film for Anti-reflection and Super-hydrophobic Applications

机译:金属盐-聚合物纳米复合膜相分离形成的表面纳米结构,用于抗反射和超疏水应用

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This paper describes a simple and low-cost fabrication method for multi-functional nanostructures with outstanding anti-reflective and super-hydrophobic properties. Our method employed phase separation of a metal salt–polymer nanocomposite film that leads to nanoisland formation after etching away the polymer matrix, and the metal salt island can then be utilized as a hard mask for dry etching the substrate or sublayer. Compared to many other methods for patterning metallic hard mask structures, such as the popular lift-off method, our approach involves only spin coating and thermal annealing, thus is more cost-efficient. Metal salts including aluminum nitrate nonahydrate (ANN) and chromium nitrate nonahydrate (CNN) can both be used, and high aspect ratio (1:30) and high-resolution (sub-50?nm) pillars etched into silicon can be achieved readily. With further control of the etching profile by adjusting the dry etching parameters, cone-like silicon structure with reflectivity in the visible region down to a remarkably low value of 2% was achieved. Lastly, by coating a hydrophobic surfactant layer, the pillar array demonstrated a super-hydrophobic property with an exceptionally high water contact angle of up to 165.7°.
机译:本文介绍了一种具有优异的抗反射和超疏水性能的多功能纳米结构的简单且低成本的制备方法。我们的方法采用了金属盐-聚合物纳米复合膜的相分离,从而在蚀刻掉聚合物基质后导致形成纳米岛,然后可以将金属盐岛用作硬掩模,以干法蚀刻衬底或子层。与许多其他用于图案化金属硬掩模结构的方法(例如流行的剥离方法)相比,我们的方法仅涉及旋涂和热退火,因此更具成本效益。可以同时使用硝酸铝九水合物(ANN)和硝酸铬九水合物(CNN)等金属盐,并且可以容易地获得蚀刻到硅中的高纵横比(1:30)和高分辨率(小于50?nm)的柱子。通过调节干法刻蚀参数进一步控制刻蚀轮廓,获得了在可见光区域反射率低至2%的极低值的锥形硅结构。最后,通过涂覆疏水性表面活性剂层,柱阵列显示出超疏水性,具有高达165.7°的极高的水接触角。

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