Green Sustainable Process for Chemical and Environmental Engineering and Science: Solid-State Energy Storage - A Path to Environmental Sustainability
Editat de Alevtina Smirnova, Abu Numan-Al-Mobin, Inamuddinen Limba Engleză Paperback – 22 sep 2022
- Includes information regarding solid-state energy storage technology as key to a green and sustainable environment
- Describes recent advances in the areas of solid-state ionics, electrochemistry, materials science and engineering, and sustainable energy
- Introduces materials synthesis approaches, including chemicals in aqueous and organic solutions, mechanical ball-milling, and physical approaches, including ink-jet and physical vapor deposition
- Provides electrochemical data and in-situ-operando approaches for the evaluation of solid-state battery performance
Preț: 1239.56 lei
Preț vechi: 1698.02 lei
-27% Nou
Puncte Express: 1859
Preț estimativ în valută:
237.20€ • 249.55$ • 196.39£
237.20€ • 249.55$ • 196.39£
Carte tipărită la comandă
Livrare economică 14-28 ianuarie 25
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9780323906357
ISBN-10: 0323906354
Pagini: 422
Dimensiuni: 191 x 235 mm
Greutate: 0.73 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0323906354
Pagini: 422
Dimensiuni: 191 x 235 mm
Greutate: 0.73 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Next-generation energy storage concepts for environmental sustainability
2. Solid state energy storage: a myth or reality?
3. Lithium-ion solid-state battery market: prospects and forecasts
4. Types of solid-state batteries for the next generation energy storage
5. Major materials challenges in solid-state battery technology
6. Interfacial phenomena in lithium-ion batteries and their observations at nanoscale
7. XPS/AES spectroscopy for evaluation of lithium ion transport at interfaces
8. In-situ/operando methods for investigation of ionic transport mechanisms in solid-state architectures
9. Decision making in battery manufacturing
10. Local degradation phenomena and post-mortem analysis relevant to the next- generation battery technology
11. Ceramic vs. glass-ceramic electrolytes for solid-state batteries
12. Solid-state batteries based on polymer nanocomposites
13. Potential application of sodium ion batteries for electric power grids
14. Solid-state energy storage for EV industry
15. Life cycle analysis for the emerging solid-state battery technology
16. Machine Learning Enabled Computational Screening of materials for the next-generation energy storage
17. Specifics of the battery management systems for solid-state battery technology
18. Problems of lithium dendrite formation in solid-state batteries
19. Composite lithium metal anodes for solid-state battery applications
2. Solid state energy storage: a myth or reality?
3. Lithium-ion solid-state battery market: prospects and forecasts
4. Types of solid-state batteries for the next generation energy storage
5. Major materials challenges in solid-state battery technology
6. Interfacial phenomena in lithium-ion batteries and their observations at nanoscale
7. XPS/AES spectroscopy for evaluation of lithium ion transport at interfaces
8. In-situ/operando methods for investigation of ionic transport mechanisms in solid-state architectures
9. Decision making in battery manufacturing
10. Local degradation phenomena and post-mortem analysis relevant to the next- generation battery technology
11. Ceramic vs. glass-ceramic electrolytes for solid-state batteries
12. Solid-state batteries based on polymer nanocomposites
13. Potential application of sodium ion batteries for electric power grids
14. Solid-state energy storage for EV industry
15. Life cycle analysis for the emerging solid-state battery technology
16. Machine Learning Enabled Computational Screening of materials for the next-generation energy storage
17. Specifics of the battery management systems for solid-state battery technology
18. Problems of lithium dendrite formation in solid-state batteries
19. Composite lithium metal anodes for solid-state battery applications