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首页> 外文期刊>Surface & Coatings Technology >Solution-processed fabrication of superhydrophobic hierarchical zinc oxide nanostructures via nanotransfer printing and hydrothermal growth
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Solution-processed fabrication of superhydrophobic hierarchical zinc oxide nanostructures via nanotransfer printing and hydrothermal growth

机译:超疏水等级氧化锌纳米结构的溶液加工制备通过纳米转器印刷和水热生长

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摘要

AbstractIn this report, we present a solution-based process to fabricate hierarchical ZnO nanostructures by a sequential nanoimprint process and hydrothermal reaction. Micro- or mesoscale ZnO patterns are first fabricated by solution-processed nanotransfer printing using colloidal ZnO nanoparticles. Nano-scale ZnO nanorods are then hydrothermally grown on the surface of microstructures to fabricate the hierarchical architectures. The ZnO-based hierarchical structures exhibited superior superhydrophobic properties with very small sliding angle (contact angle >150°, sliding angle <4°). A solution-based process using mild chemical reagents enables ZnO hierarchical structure to be fabricated on various types of substrates, including Si, glass, flexible polymer substrates, metal foils, curved surfaces, and even on the surface of LED devices, without significant damage to the substrate. This ability indicates that this fabrication method of superhydrophobic hierarchical surfaces can be potentially utilized to fabricate self-cleaning surfaces for many industrial applications, such as solar cell panels, building materials, and electronic devices.Highlights?All solution-based, large-area fabrication process is demonstrated using a nanoimprint proce
机译:<![cdata [ 抽象 在本报告中,我们介绍了一种基于解决方案的过程,通过顺序纳米视图和水热法制造分层ZnO纳米结构。反应。首先通过使用胶体ZnO纳米颗粒通过溶液处理的纳米转器印刷制造微型或Mescle ZnO图案。然后纳米级ZnO纳米棒在微结构表面上水热生长,以制造分级架构。基于ZnO的等级结构表现出具有非常小的滑动角度(接触角> 150°,滑动角度<4°)的优异的超疏水性能。使用温和化学试剂的基于溶液的方法使ZnO层次结构能够在各种类型的基材上制造,包括Si,玻璃,柔性聚合物基板,金属箔,弯曲表面,甚至在LED器件的表面上,而不会损坏基材。这种能力表明,这种超疏水层表面的制造方法可以潜在地用于制造许多工业应用的自清洁表面,例如太阳能电池板,建筑材料和电子设备。 亮点 所有基于解决方案的大面积制造过程,使用NANOIMPrint Proce演示

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