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Titlebook: Biomimetics; Bioinspired Hierarch Bharat Bhushan Book 20121st edition Springer-Verlag Berlin Heidelberg 2012 adhesion.aquatic animals.biomi

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S. G. Tullius,J. Pratschke,P. Neuhausteractions, and so on (Feng et al., 2004; Xu et al., 2005; Shirtcliffe et al., 2005; Wang et al., 2007; Krupenkin et al., 2007). An important requirement for potential applications for optics and self-cleaning glasses is the creation of transparent superhydrophobic surfaces.
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Characterization of Rose Petals and Fabrication and Characterization of Superhydrophobic Surfaces wi leaf, the liquid is allowed to impregnate between the microstructure and partially penetrates into the nanostructure, which increases the wetted surface area. As a result, contact angle hysteresis increases with increasing wetted surface area.
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Gecko Adhesion of geckos have been the most widely studied due to the fact that they have the highest body mass and exhibit the most versatile and effective adhesive known in nature. As a result, most of this chapter will be concerned with gecko adhesion.
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Roughness-Induced Superomniphobic Surfaces: Lessons from Natureto minimize the drag force in the solid–liquid interface. Low adhesion/drag also exhibits antifouling of interest in various applications including membranes used in desalination and water purification (Bixler and Bhushan,2012).
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Lotus Effect Surfaces in Naturetand the role of microbumps and nanobumps. In addition, the contact angle and adhesion and friction properties of these leaves are considered. The knowledge gained by examining these properties of the leaves and by quantitatively analyzing the surface structure will help in the design of superhydrophobic and self-cleaning surfaces.
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S. G. Tullius,J. Pratschke,P. Neuhausto minimize the drag force in the solid–liquid interface. Low adhesion/drag also exhibits antifouling of interest in various applications including membranes used in desalination and water purification (Bixler and Bhushan,2012).
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