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TiO2 nanowire-templated hierarchical nanowire network as water-repelling coating

机译:TiO2纳米线-模板分层纳米线网络作为防水涂料

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摘要

Extraordinary water-repelling properties of superhydrophobic surfaces make them novel candidates for a great variety of potential applications. A general approach to achieve superhydrophobicity requires low-energy coating on the surface and roughness on nano- and micrometre scale. However, typical construction of superhydrophobic surfaces with micro-nano structure through top-down fabrication is restricted by sophisticated fabrication techniques and limited choices of substrate materials. Micro-nanoscale topographies templated by conventional microparticles through surface coating may produce large variations in roughness and uncontrollable defects, resulting in poorly controlled surface morphology and wettability. In this work, micro-nanoscale hierarchical nanowire network was fabricated to construct self-cleaning coating using one-dimensional TiO2 nanowires as microscale templates. Hierarchical structure with homogeneous morphology was achieved by branching ZnO nanowires on the TiO2 nanowire backbones through hydrothermal reaction. The hierarchical nanowire network displayed homogeneous microano-topography, in contrast to hierarchical structure templated by traditional microparticles. This hierarchical nanowire network film exhibited high repellency to both water and cell culture medium after functionalization with fluorinated organic molecules. The hierarchical structure templated by TiO2 nanowire coating significantly increased the surface superhydrophobicity compared to vertical ZnO nanowires with nanotopography alone. Our results demonstrated a promising strategy of using nanowires as microscale templates for the rational design of hierarchical coatings with desired superhydrophobicity that can also be applied to various substrate materials.
机译:超疏水表面的非凡防水性能使其成为各种潜在应用的新型候选材料。实现超疏水性的​​一般方法需要在表面进行低能涂层,并在纳米和微米尺度上进行粗糙度处理。然而,通过自上而下的制造,具有微纳米结构的超疏水表面的典型构造受到复杂的制造技术和基底材料的有限选择的限制。由常规微粒通过表面涂层模板化的微纳米级形貌可能会在粗糙度和不受控缺陷方面产生较大变化,从而导致可控的表面形态和润湿性差。在这项工作中,使用一维TiO2纳米线作为微尺度模板,制造了微纳米尺度的分层纳米线网络以构造自清洁涂层。通过水热反应在TiO2纳米线主链上分支ZnO纳米线,从而获得具有均匀形态的分层结构。与传统微粒模板化的分层结构相反,分层的纳米线网络显示出均匀的微观/纳米形貌。在用氟化有机分子官能化后,这种分级的纳米线网络薄膜对水和细胞培养基均表现出高排斥性。与仅具有纳米形貌的垂直ZnO纳米线相比,由TiO2纳米线涂层模板化的分层结构显着提高了表面超疏水性。我们的结果证明了使用纳米线作为微型模板进行合理设计的分层涂料的合理策略,该分层涂料具有所需的超疏水性,该超疏水性也可应用于各种基材。

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