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Nanostructured Lithium-ion Battery Materials

Synthesis, Characterization, and Applications

Paperback Engels 2024 9780443133381
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Nanostructured Lithium-ion Battery Materials: Synthesis and Applications provides a detailed overview of nanostructured materials for application in Li-ion batteries, supporting improvements in materials selection and battery performance. The book begins by presenting the fundamentals of Lithium-ion batteries, including electrochemistry and reaction mechanism, advantages and disadvantages of Li-ion batteries, and characterization methods. Subsequent sections provide in-depth coverage of a range of nanostructured materials as applied to cathodes, electrolytes, separators, and anodes. Finally, other key aspects are discussed, including industrial scale-up, safety, life cycle analysis, recycling, and future research trends.

This is a valuable resource for researchers, faculty, and advanced students across nanotechnology, materials science, battery technology, energy storage, chemistry, applied physics, chemical engineering, and electrical engineering. In an industrial setting, this book will be of interest to scientists, engineers, and R&D professionals working with advanced materials for Li-ion batteries and other energy storage applications.

Specificaties

ISBN13:9780443133381
Taal:Engels
Bindwijze:Paperback

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Inhoudsopgave

Part I: Introduction to Lithium-ion Battery Systems<br>1. Introduction and History of Lithium-ion Batteries<br>2. Electrochemistry and Basic Reaction Mechanism of Lithium-ion Batteries<br>3. Advantages and Disadvantages of Lithium-ion Batteries<br>4. Characterization Methods for Lithium-ion Batteries<br><br>Part II: Nanostructured Cathode Materials for Li-ion Batteries<br>5. Hollow Carbon Spheres and Their Hybrid Nanomaterials as Cathode Materials<br>6. Nanostructured Conductive Polymers as Active Electrode Composites<br>7. Nanostructured Metal-Oxides as Cathode Materials<br><br>Part III: Nanostructured Electrolyte Materials for Li-ion Batteries<br>8. Aqueous Electrolyte for Li-ion Batteries<br>9. Non-aqueous Electrolyte for Li-ion Batteries<br>10. Ionic Liquid Electrolyte for Li-ion Batteries<br>11. Hybrid Electrolyte for Li-ion Batteries<br><br>Part IV: Nanostructured Separator Materials for Li-ion Batteries<br>12. Functionalized Polyolefin Separators<br>13. Nanostructures Separators Based on Non-Polyolefin Polymers<br><br>Part V: Nanostructured Anode Materials for Li-ion Batteries<br>14. CNT-Metal Oxide Composites as Cathode Materials<br>15. Carbonaceous Nanostructured Materials as Anodes<br>16. Titanium based Oxides as Anodes<br>17. Metal Alloys Materials as Anodes<br>18. Nanostructured Transition Metal Oxides as Anodes<br>19. MXene-based Nanomaterials as Anode Materials<br>20. Lignocellulosic Biomass Generated Activated Carbon Synthesis and its Application as an Anode Material for Lithium Ion Batteries.<br><br>Part VI: Future Outlook and Challenges<br>21. Lithium Ion Batteries: From Lab to Industry and Safety<br>22. Life-Cycle Analysis of Lithium-Ion Batteries<br>23. Lithium-Ion Batteries: Future Market Challenges and Recycling

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