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Titlebook: Stimuli-Responsive Dewetting/Wetting Smart Surfaces and Interfaces; Atsushi Hozumi,Lei Jiang,Masatsugu Shimomura Book 2018 Springer Intern

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Liquid Manipulationerhydrophobic surfaces has been reported in recent years. By using the superhydrophobic metal−polymer co-existing surfaces possessing different adhesion properties, micro droplet transfer between superhydrophobic surfaces was achieved. Water micro droplets were transferred from a low-adhesion superh
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Material-Independent Surface Modification Inspired by Principle of Mussel Adhesionpter will introduce a new concept of surface chemistry called polydopamine that can functionalize virtually any material surfaces. Polydopamine (PD) is a uniquely adaptable and simple surface functionalization method, being the first single step material-independent surface chemistry when it was fir
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Stimuli-Responsive Mussel-Inspired Polydopamine Material controlled by the coating. Therefore, one can provide stimuli-responsiveness on a surface level by co-immobilization of chemical moieties that are sensitive to light, pH, temperature, or humidity when performing polydopamine coating. Alternatively, covalent conjugations of stimuli-responsive functi
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Book 2018tting surfaces, and give an overview of the knowledge and concepts of how to design and establish these smart artificial surfaces, which can be used for technical developments in a wide variety research fields..
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Thermal-Responsive Superwetting Surfaceaces adhesion and oil/water separation by temperature driving. Finally, we will briefly address personal points of the future development and remaining challenges of the thermal-responsive superwetting surfaces.
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2211-0593 li-responsive dewetting/wetting smart surfaces and interface.Superhydrophobic surfaces, artificially mimicking lotus leaves, have captured the attention of scientists and engineers over the past few decades. Recent trends have shifted from superhydrophobicity to superominipohobicity, or superamphiph
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Magnetic-Responsive Superwetting Surface particularly on switchable wettability on magnetic-responsive surfaces and their applications such as tunable adhesion surface, microstructure fabrication, droplet actuation, and smart separation. Finally, our personal points of the future research prospect of this research are discussed.
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