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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >How Slippery are SLIPS? Measuring Effective Slip on Lubricated Surfaces with Colloidal Probe Atmoc Force Microscopy
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How Slippery are SLIPS? Measuring Effective Slip on Lubricated Surfaces with Colloidal Probe Atmoc Force Microscopy

机译:滑动滑动是多么滑? 用胶体探针型强力显微镜测量润滑表面上的有效滑动

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摘要

Lubricant-infused surfaces have attracted great attention recently and are described as slippery liquid-infused porous surfaces (SLIPS). Here, we measured the hydrodynamic drainage forces on SLIPS by colloid probe atomic force microscopy (AFM) and quantified the effective slip length over a nanothin silicone oil layer on hydrophobized [octadecyltrichlorosilane (OTS)-coated] silicon wafers. The thickness of a stable silicone oil film on OTS–Si under sucrose solution was determined to be 1.8 ± 1.3 nm and was found to induce an average effective slip length of 29 ± 3 nm, very close to that of an uninfused OTS substrate. These relatively low values of effective slip are confirmed by the relatively large macroscopic roll-off angle values of water droplets on the same substrates. Both nano- and macroscale results reflect the immobilized nature of a silicone oil layer of thickness around 2 nm within an underlying monolayer. These results have important implications in the design of drag-reducing coatings using lubricant infusion.
机译:润滑剂注入的表面最近引起了极大的关注,并且被描述为滑爽的液体注入多孔表面(滑动)。这里,通过胶体探针原子力显微镜(AFM)测量了流体动力引流力(AFM),并在疏水化[十八烷基三氯硅烷(OTS)涂覆]硅晶片上的纳米硅油层上的有效滑动长度。蔗糖溶液下稳定硅油膜上的稳定硅油膜的厚度为1.8±1.3nm,发现诱导平均有效滑动长度为29±3nm,非常接近未收集的OTS衬底。这些相对较低的有效滑移值通过相同的基板上的水滴的相对大的宏观折叠角度来证实。纳米和宏观结果都反映了在下面的单层内部约2nm厚度约2nm的硅油层的固定性质。这些结果在使用润滑剂输注方面具有重要意义。

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