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Mosquito eyes inspired surfaces with robust antireflectivity and superhydrophobicity

机译:蚊子眼睛充满了强大的抗反射性和超疏水性的表面

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摘要

Inspired by the compound eyes of the mosquito, the uniform hierarchical structures with antireflectivity and superhydrophobicity has been designed and prepared by spinning technology. Microscale silica spheres and nanoscale colloidal particles were assembled on glass substrate to produce binary structures. To enhance the hydrophobicity, particles were modified by N-(beta-aminoethyl)-gamma-aminopropylmethylbimethoxy silane (KH-602) before deposition. And annealing process was used to strengthen the mechanical robustness. The resultant structures exhibited low reflections of less than 0.5%, and high static water contact angle (WCA) of larger than 160 degrees. Furthermore, tape adhesion test and washing test showed that the artificial nano-/micro-structures had excellent mechanical robustness. Meanwhile the superhydrophobic surface owned the capacities of self-cleaning ability and chemical stability. We anticipate that these advantages could potentially enhance the performance of optoelectronic devices and help them to survive in terrible environment. Moreover, this self-assembly method is facile, cost effective, and suitable for high-throughput fabrication of binary colloidal arrays. (C) 2017 Elsevier B.V. All rights reserved.
机译:灵感来自蚊子的复合眼,通过纺丝技术设计和制备了具有抗反射性和超疏水性的​​均匀分层结构。将微观二氧化硅球和纳米级胶体颗粒组装在玻璃基板上以产生二元结构。为了增强疏水性,在沉积之前通过N-(β-氨基乙基)-Gamma-氨基丙基甲基二甲氧基硅烷(KH-602)来改性颗粒。退火过程用于增强机械稳健性。所得结构表现出低于0.5%的低反射,高于160度的高静态水接触角(WCA)。此外,胶带粘附测试和洗涤测试表明,人工纳米/微结构具有优异的机械稳健性。同时,超疏水表面拥有自清洁能力和化学稳定性的能力。我们预计这些优势可能会提高光电器件的性能,并帮助他们在可怕的环境中存活。此外,这种自组装方法适用于二元胶体阵列的高通量制造。 (c)2017年Elsevier B.V.保留所有权利。

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