Buch, Englisch, 352 Seiten, Format (B × H): 178 mm x 254 mm
Recent Advancement and Challenges
Buch, Englisch, 352 Seiten, Format (B × H): 178 mm x 254 mm
ISBN: 978-1-032-82965-4
Verlag: Taylor & Francis
This book covers the fundamentals of organic batteries, materials for cathode and anode in organic batteries, various synthesis methods, and approaches to modify their properties to provide high energy and power densities, along with long life and stable electrochemical characteristics. It provides current, state-of-the-art knowledge and future challenges in organic batteries.
Features:
- Covers materials, chemistry, and technologies for organic batteries.
- Covers the state-of-the-art progress and challenges in organic batteries.
- Provides fundamentals of the electrochemical behavior of various organic batteries.
- Offers insight into tuning the properties of organic materials to make them suitable for battery applications.
- Provides directions to scientists, researchers, and students to better understand chemistry, electrochemical properties, and technologies for organic batteries.
The book is suitable for students and researchers working in the energy sector, materials, and nanotechnology.
Zielgruppe
Academic, Postgraduate, and Professional Practice & Development
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
Chapter 1. Introduction. Chapter 2. Materials for Organic Batteries. Chapter 3. Reaction Mechanism in Organic Batteries. Chapter 4. Emerging Materials for Organic Batteries. Chapter 5. Characterization of Organic Batteries. Chapter 6. Advances in Organic Lithium-Ion Batteries: Innovations in Materials, Electrolytes, and Performance Optimization. Chapter 7. Organic Sodium-Ion Batteries. Chapter 8. Organic Potassium-Ion Batteries. Chapter 9. Organic Multivalent Metal Batteries. Chapter 10. Organic Dual-Ion Batteries. Chapter 10. Organic Dual-Ion Batteries. Chapter 11. Aqueous Organic Batteries. Chapter 12. Organic Redox Flow Batteries. Chapter 13. Empowering Energy: Innovations in Organic Redox Flow Batteries. Chapter 14. Molecular design strategies for redox species in non-aqueous redox flow batteries. Chapter 15. Metal-Organic Frameworks for Organic Batteries. Chapter 16. Unlocking Power: Metal-Organic Frameworks in Next-Gen Organic Batteries. Chapter 17. Revolutionizing Lithium-Sulfur Batteries: The Role of Polymeric Materials. Chapter 18. Wearable Organic Batteries. Chapter 19. Advanced All-Solid-State Organic Batteries for Sustainable Energy Storage




