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Water motion and movement without sticking, weight loss and cross-contaminant in superhydrophobic glass tube

机译:超疏水玻璃管中的水运动和运动而不会粘附,减重和交叉污染

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We report that a simple fabrication of a superhydrophobic nanosurface consisted of a grass-like silica thin film on the inner wall of a glass tube and its feature in water motion and water movement. The glass tube with a superhydrophobic inner wall can make the water flow with friction-drag reduction and completely preventing water sticking. Transferring water by this tube did not cause weight loss at all. Therefore, aqueous solutions containing high content metal ions were cross-moved without washing the tube used and no cross-contamination occurred after cross-movement. Furthermore, in an inside diameter of 6.0 mm glass tube where the half-length of the inner surface is covered by superhydrophobic nanograss and the other half is an unmodified hydrophilic surface, the water droplets flowing down from the hydrophilic side can be stopped spontaneously at the hydrophilic-superhydrophobic boundary as if there is an invisible flow-stopping fence built inside the glass tube.
机译:我们报告说,超疏水纳米表面的简单制造包括在玻璃管内壁上的草样二氧化硅薄膜及其在水运动和水运动中的特征。内壁超疏水的玻璃管可以减少摩擦阻力,使水流,并完全防止水粘。通过该管转移水根本不会引起体重减轻。因此,含有高含量金属离子的水溶液在不清洗所使用的管的情况下被交叉移动,并且在交叉移动之后也没有发生交叉污染。此外,在内径为6.0 mm的玻璃管中,其内表面的一半长度被超疏水性纳米草覆盖,另一半为未改性的亲水性表面,从亲水性侧向下流动的水滴可以自发地被阻止。亲水-超疏水边界,好像在玻璃管内建有看不见的止流栅栏。

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