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Biomimetic Artificial PVDF Film Reproduce the Superhydrophobic Property of a Lotus Leaf

机译:仿生人造PVDF薄膜再现荷叶的超疏水特性

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Lotus flower is a symbol of purity in Asian cultures, when growing from muddy waters it stays clean and uncontaminated. The "self-cleaning" surface of lotus leaf is hydrophobic and rough, showing hierarchical micro- and nano-scale structures. Stimulated by “lotus effect”, the microreliefs of lotus leaf was mimicked using PVDF film and the nano-scale protrusions on the top of the microreliefs were implemented by the mixed solution of dimethyldichlorosilane (DDS) and methyltrichlorosilane (MTS). A lotus-leaf-like surface of the PVDF film was clearly observed by SEM. Elemental composition analysis by XPS revealed that the nanostructure materials of PVDF film were polymethylsiloxane and polydimethylsiloxane. The superhydrophobic property of the mimicked self-cleaning surface was validated by the water contact angle and sliding angle on the lotus-leaf-like PVDF film, which are 155°and 4°, respectively. In this case, water drops can easily move across the PVDF film surface, carrying dirt particles away, leaving no contamination.
机译:莲花在亚洲文化中是纯洁的象征,从泥泞的水中生长时,它保持清洁且不受污染。荷叶的“自清洁”表面是疏水且粗糙的,显示出分级的微米和纳米级结构。在“莲花效应”的刺激下,使用PVDF膜模拟荷叶的微浮雕,并通过二甲基二氯硅烷(DDS)和甲基三氯硅烷(MTS)的混合溶液实现微浮雕顶部的纳米级突起。通过SEM清楚地观察到PVDF膜的荷叶状表面。 XPS的元素组成分析表明,PVDF薄膜的纳米结构材料为聚甲基硅氧烷和聚二甲基硅氧烷。通过在荷叶状PVDF膜上的水接触角和滑动角分别为155°和4°来验证模仿的自清洁表面的超疏水性。在这种情况下,水滴很容易在PVDF薄膜表面上移动,带走灰尘颗粒,而没有污染。

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