Bio-Inspired Wettability Surfaces: Developments in Micro- and Nanostructures
Editat de Zheng Yongmei, Cheng Qunfeng, Hou Yongping, Yuan Chenen Limba Engleză Hardback – 16 iun 2015
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.
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Specificații
ISBN-13: 9789814463607
ISBN-10: 9814463604
Pagini: 216
Ilustrații: 89 black & white illustrations, 9 colour illustrations
Dimensiuni: 152 x 229 x 18 mm
Greutate: 0.44 kg
Ediția:1
Editura: Jenny Stanford Publishing
Colecția Jenny Stanford Publishing
ISBN-10: 9814463604
Pagini: 216
Ilustrații: 89 black & white illustrations, 9 colour illustrations
Dimensiuni: 152 x 229 x 18 mm
Greutate: 0.44 kg
Ediția:1
Editura: Jenny Stanford Publishing
Colecția Jenny Stanford Publishing
Public țintă
Academic and PostgraduateNotă biografică
Yongmei Zheng is a professor at the School of Chemistry and Environment, Beihang University, Beijing, China. She received her master’s degree from the Department of Applied Physics and her doctorate from the School of Communications and Information Engineering, Jilin University, China. She worked as a postdoctoral fellow in Lei Jiang’s group at the Institute of Chemistry, Chinese Academy of Sciences (ICCAS), Beijing, and also as an associate professor at the National Center for Nanoscience and Technology, Beijing, and the School of Chemistry and Environment, Beihang University, Beijing. She also conducts her research in the Key Laboratory of Bio-inspired Smart Interfacial Science and Technology of the Ministry of Education, Beijing. She has published over 30 articles in international peer-reviewed journals, has been part of more than 10 conferences and presentations, and has 7 patents to her credit. Her current research focuses on the study of wettability functions of biological surfaces with unique gradient micro-/nanostructure and the preparation of artificial functional surfaces by various techniques and methods to mimic the unique features of biosurfaces.
Cuprins
Preface, Chapter 1: Lotus Leaf Effect: Micro- and Nanostructures, Chapter 2: Butterfly Wing Effect: Anisotropically Oriented Micro- and Nanostructures, Chapter 3: Spider Silk Effect: Gradient Micro- and Nanostructures, Chapter 4: Beetle Back Effect: Heterogeneous Wetting Micro- and Nanostructure Patterns
Descriere
Biological 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, and antifogging. This book presents the mechanism of smart wetting control, such as water collection/repellency on biological micro-/nanostructure gradient interfaces. It also offers approaches on how to mimic the biological features to realize the bioinspired functional surfaces with unique wettability. The book will help researchers to develop the innovative design of novel materials.