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Nanostructured Materials Engineering and Characterization for Battery Applications

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2024
ISBN13: 9780323913041
Rubricering
Elsevier Science e druk, 2024 9780323913041
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Samenvatting

Nanostructured Materials Engineering and Characterization for Battery Applications is designed to help solve fundamental and applied problems in the field of energy storage. Broken up into four separate sections, the book begins with a discussion of the fundamental electrochemical concepts in the field of energy storage. Other sections look at battery materials engineering such as cathodes, electrolytes, separators and anodes and review various battery characterization methods and their applications. The book concludes with a review of the practical considerations and applications of batteries.This will be a valuable reference source for university professors, researchers, undergraduate and postgraduate students, as well as scientists working primarily in the field of materials science, applied chemistry, applied physics and nanotechnology.

Specificaties

ISBN13:9780323913041
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

SECTION 1: Introduction to energy storage systems and fundamentals<br><br>1. Electrochemical energy storage technologies: state of the art, case studies, challenges, and opportunities<br>2. Battery modeling<br><br>SECTION 2: Engineering of battery materials<br><br>3. Nanostructured cathode materials<br>4. Nanostructured electrolyte materials<br>5. Nanostructured functionalized separators<br>6. Nanostructured anode materials<br>7. Computational materials design of nanostructured materials for battery applications<br><br>SECTION 3: Battery characterization<br><br>8. Characterization of battery materials by electrochemical method<br>9. Characterization of battery materials by microscopy techniques<br>10. Characterization of battery materials by neutron scattering methods<br>11. Characterization of battery materials by X-ray methods<br>12. Characterization of battery materials by mechanical<br>13. Characterization of battery materials by surface spectroscopy methods<br><br>SECTION 4: Applications, practical considerations, and perspectives on batteries<br><br>14. Battery manufacturing—from laboratory to industry—challenges<br>15. Life cycle assessment of batteries<br>16. Battery applications<br>17. A simplified model to improve the performance of repurposed electric vehicle batteries<br>18. Fully green batteries<br>19. Integrated technologies and novel nanostructured materials for energy storage<br>20. Future of lignocellulosic biomassderived activated carbon for battery application<br>21. Artificial intelligence and machine learning in battery materials and their applications

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        Nanostructured Materials Engineering and Characterization for Battery Applications