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Materials with Extreme Wetting Properties

Methods and Emerging Industrial Applications

  • Highlights an interdisciplinary effort for novel applications of materials of extreme wetting properties (MEWP) with an insight towards expected forthcoming development in the field
  • Evaluates the most advanced MWEP’s functional properties, environmental impact, sustainability, social effects, and economic benefits
  • Reviews cutting edge discoveries and detailed information on recent technological developments in MWEPs and includes a discussion of potential areas for future research in the field

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Table of contents (15 chapters)

  1. Front Matter

    Pages i-xvi
  2. Superhydrophobic Textiles Using Nanoparticles

    • Ioannis Karapanagiotis, Majid Hosseini
    Pages 1-37
  3. Self-Recovery Superhydrophobic Surfaces

    • Wendong Liu, Michael Kappl, Hans-Jürgen Butt
    Pages 39-61
  4. Superhydrophobic Polymer/Nanoparticle Hybrids

    • Saravanan Nagappan, Chang-Sik Ha
    Pages 91-116
  5. Nanoengineered Surfaces as a Tool Against Bacterial Biofilm Formation

    • Alan dos Santos da Silva, João Henrique Zimnoch dos Santos
    Pages 117-132
  6. Hydrophobized Granular Materials for Ground Infrastructure

    • Sérgio D. N. Lourenço, Yunesh Saulick, Zheng Shuang, Xin Xing, Lin Hongjie, Yang Hongwei et al.
    Pages 153-177
  7. Superhydrophobic Metal Surface

    • Debasis Nanda, Apurba Sinhamahapatra, Aditya Kumar
    Pages 179-193
  8. Extreme Wetting Properties of Liquid Metal

    • Lei Wang, Jing Liu
    Pages 195-208
  9. Superhydrophobic and Self-Cleaning Coatings for the Protection of the Cultural Heritage: A Case Study Using TiO2 Nanoparticles

    • Ioannis Karapanagiotis, Ioannis Poulios, Aikaterini Chatzigrigoriou, Tobin Kopp
    Pages 209-232
  10. Hydrophobic Carbon Soot Nanostructure Effect on the Coatings

    • Meruyert Nazhipkyzy, Hamidreza Pourghazian Esfahani, Alireza Pourghazian Esfahani, Zulkhair A. Mansurov, A. R. Seitkazinova
    Pages 233-244
  11. Laser Surface Engineering for Boiling Heat Transfer Applications

    • Matevž Zupančič, Peter Gregorčič
    Pages 245-303
  12. Investigation of Conditions for the Creation of Hydrophobic Sand

    • Meruyert Nazhipkyzy, Gulmira Orinbekovna Tureshova, Zulkhair Aimukhametovich Mansurov
    Pages 341-352
  13. Back Matter

    Pages 353-370

About this book

This book aims at identifying novel advanced materials of extreme wetting properties (MEWP) for practical, industrial applications. The state-of-the art superhdyrophobic, superhdyrophilic, superoleophobic, superoleophilic, and superomniphobic materials, that are MEWP, with respect to their technological and emerging industrial applications are discussed in this book. MEWP offer new perspectives providing numerous potential applications. Hence, these advanced MEWP have the potential to lead to a new generation of products and devices with unique properties and functionalities. Despite the large scientific progress on MEWP there are still some obstacles which have to be solved to make these materials available for real life applications. Recent advances on the production strategies, including methods and materials, of MEWP has shown that the durability and sustainability obstacles can be addressed thus offering the possibility for industrial exploitation. MEWP with wettabilities ranging from superhydrophobicity to superhydrophilicity provide promising avenues for several and important applications, which sometimes are crucial for the humankind. This book also discusses a large variety of other potential applications of MEWP, thus providing new ideas to scientists and engineers for further exploitation of these novel materials. Moreover, the whole spectrum of the recent technological developments, current research progress, future outlook, and the modern trends in the applications of MEWP are discussed in a consistent approach.

Editors and Affiliations

  • Department of Manufacturing and Industrial Engineering, The University of Texas Rio Grande Valley, Edinburg, USA

    Majid Hosseini

  • Department of Management and Conservation of Ecclesiastical Cultural Heritage Objects, University Ecclesiastical Academy of Thessaloniki, Thessaloniki, Greece

    Ioannis Karapanagiotis

About the editors

Dr. Majid Hosseini has earned both his Ph.D. and M.S. degrees in Chemical Engineering from The University of Akron in Ohio, United States, while also holding a professional certificate in Innovation and Technology from Massachusetts Institute of Technology in Massachusetts, United States. He has also completed an MSE degree in Manufacturing Engineering at UTRGV in Texas, United States and a Bachelor’s degree in Chemical Engineering at Sharif University of Technology in Tehran, Iran. Dr. Hosseini is the editor of multiple high caliber books, has published several peer reviewed research articles and book chapters, and has co-invented patents application technologies. He has served as a key speaker at multiple international conferences and has been actively engaged in technology development. Dr. Hosseini’s research interests, expertise, and experiences are diverse, ranging from smart bio-/nanomaterials, smart polymers and coatings, nanoparticles, and bio-/nanotechnology to bioprocess engineering and development, biomanufacturing, biofuels and bioenergy, and sustainability.

Dr. Ioannis Karapanagiotis has obtained his Ph.D. in Materials Science and Engineering from the University of Minnesota, USA, and his diploma in Chemical Engineering from the Aristotle University of Thessaloniki, Greece. He serves as a member in editorial boards and reviewer in several journals (more than 100), and he has published multiple research papers (more than 150) in peer-reviewed journals, books, and conference proceedings. Dr. Karapanagiotis specializes in interfacial engineering and its applications on the protection and conservation of cultural heritage and in the physicochemical characterization and analysis of cultural heritage materials which are found in historic monuments, paintings, icons, textiles, and manuscripts. Dr. Karapanagiotis is an associate professor at the Department of Management and Conservation of Ecclesiastical Cultural Heritage Objects, University Ecclesiastical Academy of Thessaloniki, Greece.

Bibliographic Information

  • Book Title: Materials with Extreme Wetting Properties

  • Book Subtitle: Methods and Emerging Industrial Applications

  • Editors: Majid Hosseini, Ioannis Karapanagiotis

  • DOI: https://doi.org/10.1007/978-3-030-59565-4

  • Publisher: Springer Cham

  • eBook Packages: Chemistry and Materials Science, Chemistry and Material Science (R0)

  • Copyright Information: Springer Nature Switzerland AG 2021

  • Hardcover ISBN: 978-3-030-59564-7Published: 18 February 2021

  • Softcover ISBN: 978-3-030-59567-8Published: 19 February 2022

  • eBook ISBN: 978-3-030-59565-4Published: 17 February 2021

  • Edition Number: 1

  • Number of Pages: XVI, 370

  • Number of Illustrations: 24 b/w illustrations, 143 illustrations in colour

  • Topics: Surfaces and Interfaces, Thin Films, Tribology, Corrosion and Coatings, Materials Engineering

Buy it now

Buying options

eBook USD 129.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 169.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 169.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access