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STICKY AND SLIPPY: TWO HYDROPHOBIC STATES TRANSITION OF ZnO HIERARCHICAL FILMS BY FLUOROALKYLSILANE MODIFICATION

机译:粘性和抖动:氟代烷基硅烷改性的ZnO分层膜的两个疏水状态转变

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ZnO films with hierarchical structures were prepared in an aqueous solution of zinc nitrate, hexamethylenetetramine and hydrofluoric acid. They demonstrated superhydrophobicity and two superhydrophobic states conversion from sticky to slippy after they were modified by fluoroalkylsilane (FAS) self-assemble layers. Before FAS modification, ZnO hierarchical structures, having sphere-like microstructures with nano-petals, showed water contact angle of 151° and a sticky behavior: water droplets rest on such surface did not slide when the surface was tilted to any angle or even upside down, indicating a strong adhesion between water and the surface. However, after FAS modification, ZnO films showed an increase of water contact angle up to 164° and a large difference in dynamic wetting properties: water droplets moved spontaneously and hardly came to rest even on a horizontal surface. The transition from sticky ("Wenzel's state") to slippy ("Cassie's state") resulted from surface free energy change from high to low. The results also confirm that the low enough surface energy, cooperating with surface roughness, is crucial in making Cassie's state superhydrophobicity. The realization of conversion from sticky to slippy is of importance for further understanding wetting properties and applications of ZnO micronanostructures.
机译:在硝酸锌,六亚甲基四和氢氟酸的水溶液中制备的ZnO薄膜具有层次结构。他们证明从粘到滑爽超疏水和两个超疏水状态转换,他们被氟烷改性后(FAS)自组装层。 FAS改性之前,氧化锌的层次结构,具有球面状的具有纳米花瓣,151显示出的水接触角°和粘性行为的微结构:水滴休息这样的表面上没有滑动时的表面被倾斜成任意角度,甚至颠倒向下,水和所述表面之间的附着力强。然而,FAS改性后,ZnO薄膜表现出的水接触角的增加高达164°,动态润湿性能差大:水滴自发移动并且几乎不来休息甚至在水平表面上。从粘滑爽的过渡(“文策尔的状态”)(“卡西的状态”),原因是表面自由能的变化,从高至低。结果也证实了足够低的表面能,表面有粗糙的合作,是使卡西的状态超疏水性是至关重要的。从粘滑爽转换的实现是做进一步的了解润湿性能和ZnO micronanostructures的应用程序的重要性。

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