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- W2565136692 abstract "Flow friction on solid surfaces, whether it is inside small pipes or over large vessel surfaces, is determined by the shear at the wall. For all the practical purposes, the flow velocity at the wall surface is considered zero—the so-called “non-slip” condition. There have been efforts to defy the non-slip and reduce drag of liquid flow, for example, by generating bubbles on the surface. Our breakthrough is to use surfaces covered with nanometer-scale hydrophobic (i.e., nonwetting) posts, coined “NanoTurf”. Skidding over the posts and mostly levitated from the wall, the liquid is expected to in effect “slip” over the solid surface. The concept can be demonstrated with micrometer-scale posts, made by conventional lithographic techniques (Fig. 1a). However, it is critical that the posts are of nanometer scale (Fig. 1b), because otherwise the liquid would lose levitation under a slight pressure. Nanotechnology makes the idea practical for the first time." @default.
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- W2565136692 date "2002-01-01" @default.
- W2565136692 modified "2023-10-17" @default.
- W2565136692 title "NanoTurf: Nano-engineered Low Flow Friction Surfaces" @default.
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