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Titlebook: Biomimetics; Bioinspired Hierarch Bharat Bhushan Book 2018Latest edition Springer Nature Switzerland AG 2018 Biomimetics inspired surfaces.

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Springer Series in Materials Sciencehttp://image.papertrans.cn/b/image/188232.jpg
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Strategies for Micropatterned, Nanopatterned, and Hierarchically Structured Lotus-like Surfaces,nding upon whether the surface is hydrophilic or hydrophobic (Bhushan and Jung 2011). Yost et al. (1995) found that roughness enhances wetting of a copper surface with Sn–Pb eutectic solder, which has a contact angle of 15°–20° for a smooth surface.
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Adaptable Fabrication Techniques for Mechanically Durable Superliquiphobic/philic Surfaces,elf-cleaning, anti-icing, anti-fogging, anti-fouling, finger print resistance, and drag reduction. The surfaces should be wear resistant. For some applications, such as oil-water separation, surfaces with a combination of water and oil repellency and affinity are required.
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Bio- and Inorganic Fouling,organic fouling. Biofouling is the accumulation of unwanted biological matter on surfaces, with biofilms created by microorganisms, and macroscale biofouling (simply called macrofouling) created by macroorganisms.
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Role of Liquid Repellency on Fluid Slip, Fluid Drag, and Formation of Nanobubbles,l, and medical fields (Bhushan ., ., .). Fluid flow is known to have zero slip on liquiphilic surfaces. In the no-slip boundary condition, the relative velocity between a solid wall and liquid flow is zero at the solid-liquid interface (Batchelor .).
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Modeling of Contact Angle for a Liquid in Contact with a Rough Surface for Various Wetting Regimes,, and Cassie regimes. In the Wenzel regime, a liquid droplet completely wets the rough surface with a homogeneous interface. In the Cassie-Baxter regime, a heterogeneous or composite interface with air pockets trapped between the asperities is formed. In a Cassie regime, a liquid film impregnates so
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Strategies for Micropatterned, Nanopatterned, and Hierarchically Structured Lotus-like Surfaces,nding upon whether the surface is hydrophilic or hydrophobic (Bhushan and Jung 2011). Yost et al. (1995) found that roughness enhances wetting of a copper surface with Sn–Pb eutectic solder, which has a contact angle of 15°–20° for a smooth surface.
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