Buch
Controlled Surface Wetting
-From Bioinspiration to Applications-Yongmei Zheng
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Autorinformation
Produktinformation
Inhaltsverzeichnis
Leseprobe
Übersicht
Verlag | : | Wiley-VCH |
Sprache | : | Englisch |
Erschienen | : | 07. 05. 2025 |
Seiten | : | 320 |
Einband | : | Gebunden |
Höhe | : | 244 mm |
Breite | : | 170 mm |
ISBN | : | 9783527352890 |
Sprache | : | Englisch |
Autorinformation
Yongmei Zheng, PhD, is a professor at Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beihang University, Beijing. Her research interests are focused on bioinspired surfaces with gradient micro- and nanostructures to control dynamic wettability and develop the surfaces and materials with characteristics of fog-harvesting, tiny droplet transport, water collection, water harvesting, water repellency, anti-icing/ice-phobicity etc. Her publications are more than 142 SCI papers with H index of 47.
Produktinformation
offers the theory and mechanism of wetting-controlled surfaces, model of physics and chemistry, idea of design, methods of fabrication to realize wetting functions.
Inhaltsverzeichnis
1 Wetting-Controlled Systems of Biological Surfaces1.1 Introduction1.2 Wetting Features of Biological Surfaces1.3 Anti-wetting Features of Biological Surfaces1.4 Biological Patterns on Micro- and Nano-scale Structures1.5 Wetting-Controlled EffectsReferences 2 Mechanism and Theory of Wetting-Controlled Surfaces2.1 Concept of Wetting Controlled Effects2.2 Wetting Theory of Surfaces2.3 Physics of Wetting2.3.1 Molecular Interactions in Wetting and Adhesion2.4 Surface Chemistry and Structures2.5 Bioinspired Wetting Controlled Mechanism2.6 Self-Propelling Effects of Surfaces2.7 Capillary Regime2.8 Liquid Infused SurfacesReferences 3 Design on Surfaces with Wetting-Controlled Effects3.1 Concept of Gradients3.2 Chemistry Gradient3.3 Texture Gradients3.4 Geometry Gradient3.5 Synergism of Multi-Gradients3.6 Surface Tension GradientReferences 4 Development on bioinspired fabrication and methods4.1 Rayleigh Instability4.2 Microfluidics4.3 Fluid-Coating4.4 Electrospinning4.5 Electrochemisty4.6 Fluid Diffusion for Gradient4.7 Laser Techniques4.8 Printing Techniques4.9 Nanotechnology4.10 Plasma TechniquesReferences 5 Wetting-Controlled Effects for Functions and Applications5.1 Condensate Droplet Transport5.2 Fogdroplet Harvesting5.3 Atmospheric Water Harvesting5.4 Anti-icing5.5 Liquid Repellency5.6 Energy Harvesting5.7 Heat Transfer5.8 Artificial Skin and Sensor5.9 Medical ApplicationReferencesSummary