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Slippage of Water Past Superhydrophobic Carbon Nanotube Forests in Microchannels

机译:微通道中经过超疏水碳纳米管森林的水滑移

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We present in this Letter an experimental characterization of liquid flow slippage over superhydro-phobic surfaces made of carbon nanotube forests, incorporated in microchannels. We make use of a particle image velocimetry technique to achieve the submicrometric resolution on the flow profile necessary for accurate measurement of the surface hydrodynamic properties. We demonstrate boundary slippage on the Cassie Superhydrophobic state, associated with slip lengths of a few microns, while a vanishing slip length is found in the Wenzel state when the liquid impregnates the surface. Varying the lateral roughness scale L of our carbon nanotube forest-based Superhydrophobic surfaces, we demonstrate that the slip length varies linearly with L in line with theoretical predictions for slippage on patterned surfaces.
机译:我们在这封信中介绍了在微通道中并入的由碳纳米管森林制成的超疏水表面上的液流滑移的实验表征。我们利用粒子图像测速技术来实现对流量的亚微米分辨率,以精确测量表面流体动力学特性。我们证明了Cassie超疏水状态的边界滑移,与滑移长度为几微米相关,而当液体浸入表面时,在Wenzel状态下滑移长度消失了。改变基于碳纳米管森林的超疏水性表面的横向粗糙度L,我们证明滑移长度随L线性变化,这与图案化表面滑移的理论预测一致。

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