High-Entropy Materials for Energy Storage Devices
eBook - ePub

High-Entropy Materials for Energy Storage Devices

  1. 459 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

High-Entropy Materials for Energy Storage Devices

About this book

Provides a state-of-the-art overview of the high-entropy materials driving next-generation energy storage and conversion technologies

The development of high-entropy materials (HEMs) represents one of the most significant innovations in materials science for energy storage technologies. Traditional electrode and catalyst materials are constrained by performance, cost, and stability challenges, limiting the growth and reliability of renewable energy solutions. By contrast, HEMs—owing to their unique structural diversity, tunable composition, and robust stability—offer a paradigm-shifting pathway to advance batteries, capacitors, fuel cells, and hydrogen storage.

High-Entropy Materials for Energy Storage Devices is the first comprehensive treatment of this field, bridging fundamental theory with device-oriented application. This authoritative volume introduces the conceptual foundations of high-entropy alloys and oxides, alongside emerging classes of perovskite-based, 2D-functional, metal-free, and morphology-dependent materials. Advanced synthesis and characterization methods are explained in detail, equipping researchers and engineers with the tools to tailor materials for electrochemical performance. Individual chapters address key topics such as electro-kinetics, surface chemistry, industrial perspectives, and future research challenges. Practical applications are emphasized through coverage of batteries, supercapacitors, and dielectric capacitors, supported by case studies that demonstrate the transformative role of HEMs in next-generation energy systems.

Uniting fundamental principles with applied engineering perspectives to accelerate progress in addressing global energy storage needs, High-Entropy Materials for Energy Storage Devices:

  • Provides detailed coverage of electro-kinetics and surface chemistry in high-entropy systems
  • Integrates industrial perspectives, highlighting scalability, cost considerations, and commercialization potential
  • Features case studies linking material properties with real-world device performance outcomes
  • Explores both noble metal-based and noble metal-free material systems
  • Offers comparative insights into alloys, oxides, and morphology-dependent high-entropy materials
  • Discusses future challenges, emerging directions, and prospects for innovation

High-Entropy Materials for Energy Storage Devices is an essential resource for graduate students, researchers, and professionals in materials science, electrochemistry, and chemical engineering. It is particularly suited for advanced courses on energy materials, electrochemical energy storage, and materials for renewable energy systems within M.Sc., Ph.D., and engineering degree programs.

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Information

Publisher
Wiley-VCH
Year
2026
Print ISBN
9783527355587
Edition
1
eBook ISBN
9783527853656

Table of contents

  1. Cover
  2. Table of Contents
  3. Title Page
  4. Copyright
  5. Preface
  6. List of Abbreviations
  7. 1 Overview of High-Entropy Materials for Energy Storage
  8. 2 Perovskite-Based High-Entropy Materials for Energy Storage Applications
  9. 3 Functional 2D-Based High-Entropy Materials for Energy Storage Applications
  10. 4 Recent Advancements for High-Entropy Materials for the Dielectric Capacitor
  11. 5 Electrokinetics of High-Entropy Materials for Energy Storage Devices
  12. 6 Importance of High-Entropy Materials for Energy Storage Applications
  13. 7 Noble-Metal-Based High-Entropy Oxides for Energy Storage Applications
  14. 8 Noble-Metal-Free High-Entropy Oxides for Energy Storage Applications
  15. 9 Noble Metal-Based High-Entropy Alloys for Energy Storage Applications
  16. 10 Noble-Metal-Free High-Entropy Alloys for Energy Storage Applications
  17. 11 Metal-Free High-Entropy Materials for Energy Storage Applications
  18. 12 Metal-Doped High-Entropy Materials for Energy Storage Applications
  19. 13 Noble Metal-Doped High-Entropy Materials for Energy Storage Applications
  20. 14 Morphology-Dependent High-Entropy Materials for Energy Storage Applications
  21. 15 Industrial Aspects of High-Entropy Materials for Energy Storage Applications
  22. 16 Current Status, Challenges, and Prospects of High-Entropy Materials
  23. Index
  24. End User License Agreement

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Yes, you can access High-Entropy Materials for Energy Storage Devices by Chien-Te Hsieh,Pradeep Kumar Panda,Arpan Kumar Nayak in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Energy. We have over 1.5 million books available in our catalogue for you to explore.