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Multifunctional composite films with vertically aligned ZnO nanowires by leaching-enabled capillary rise infiltration

机译:垂直于一身的多功能复合薄膜由leaching-enabled对齐的氧化锌纳米线毛细上升渗透

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摘要

Nanocomposite films (NCFs) with vertically aligned nanowires (NWs) provide several useful properties owing to their unique morphology. One of the key challenges in producing such an NCF is retaining the vertical alignment of NWs during NCF fabrication. Although current methods such as layer-by-layer assembly and solution-based processes with field-induced alignment of NWs have been successfully demonstrated, these approaches require multiple steps thus are time-consuming, and only suitable for lab-scale production, consequently limiting their widespread applicability. Herein, we describe a new method for fabricating an NCF with vertically aligned ZnO NWs by inducing leaching-enabled capillary rise infiltration (LeCaRI) of uncross-linked and mobile oligomer chains from a poly(dimethylsiloxane) (PDMS) slab into the space between the vertically aligned ZnO NWs. PDMS-infiltrated ZnO NW NCFs have a suite of useful properties including superhydrophobicity, self-cleaning, solvent resistance, and anti-icing properties as well as high transparency and anti-reflection properties. The NCF can easily recover its superhydrophobicity after it has been compromised through repeated plasma treatments or even exposure to intense UV irradiation. Moreover, our approach represents a straightforward, efficient, and potentially scalable strategy to produce multifunctional NCFs with vertically aligned NW arrays which could be easily extended to other types of materials and NW arrangements toward a wide range of properties and applications.
机译:纳米复合材料薄膜(NCFs)和垂直对齐纳米线(NWs)提供一些有用的属性由于其独特的形态。生产这种NCF保留的挑战NWs NCF时的垂直对齐制造。逐层组装和为基础的解决方案流程与磁场诱导NWs对齐已经成功地证明,这些吗因此需要多个步骤方法耗时的,只有适合实验室规模生产,因此限制了他们广泛的适用性。制造与垂直NCF的新方法氧化锌NWs通过诱导leaching-enabled保持一致毛细上升渗透(LeCaRI)uncross-linked和移动的低聚物链保利(dimethylsiloxane) (PDMS)板空间垂直对齐的氧化锌所在地之间。PDMS-infiltrated氧化锌NW NCFs套件包括superhydrophobicity有用的属性,自洁、耐溶剂性和防冰高透明度和属性anti-reflection属性。恢复其superhydrophobicity后通过重复等离子治疗或妥协即使暴露在强烈的紫外线照射。此外,我们的方法表示简单,有效,并有可能生产多功能NCFs可伸缩的策略与垂直对齐的NW数组容易扩展到其他类型的材料和西北安排向广泛的属性和应用程序。

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