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Bio-inspired Wettability Surfaces (ebook)
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ISBN 9789814463614
REGISTERED: 10/14/19
UPDATED: 02/24/26
Bio-inspired Wettability Surfaces (ebook)

By Zheng Yongmei PRINTISBN: 9789814463607 E-TEXT ISBN: 9789814463614 Edition: 1


Specifications
  • Bio-inspired Wettability Surfaces (ebook) available on July 22 2018 from VitalSource for Https://www.vitalsource.com/en-au/products/bio-inspired-wettability-surfaces-zheng-yongmei-v9789814463614?duration=perpetual&cjsku=9789814463614" itemprop="offers" target="_external" title="" itemscope itemtype="http://schema.org/Offer">85.8
  • ISBN bar code 9789814463614 ξ1 registered April 06 2016
  • Product category is Book

  • # 9789814463614

Interestingly, they have developed micro-/nanostructures with gradient features to achieve smart wetting controls, such as ultra-hydrophobic water repellency in lotus leaf, directional water collection in wetted spider silk, directional adhesion in superhydrophobic butterfly wing, and fog-collecting hydrophobic/hydrophilic pattern on beetle back. These surfaces provide endless inspiration for the design and fabrication of functional interface materials with unique wettability, generating promising applications such as micro-fluidic devices, functional textiles, corrosion resistance, liquid transportation, antifogging, and water-collecting devices. In recent years there has been an exciting confluence of research areas of physics, chemistry, biology, and materials science to develop functional micro- and nanosurfaces. A kernel consists of organic materials with high/low surface energy and regular/irregular order/disorder, which can be rough/smooth and endlessly arranged and combined with various styles of micro- and nanostructures. This book introduces recent research on wettability of biological and bio-inspired surfaces. It discusses the mechanism of smart wetting controls, such as water collection/repellency on biological micro-/nanostructure gradient interfaces. It suggests ways to mimic these biological features to realize bio-inspired functional surfaces with unique wettability. The book will help researchers innovate designs with novel materials for future scientific works.


References
    ^ Bio-inspired Wettability Surfaces (ebook) VitalSource. (revised Jul 2018)

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