Photochemical Splitting of Water: Fundamentals to Applications
Editat de Soney C. George, Sajith Kurian, Luís P. M. Santosen Limba Engleză Paperback – iun 2025
The final chapters of the book focus on challenges, emerging trends, and key opportunities for the future, including tandem approaches that combine a solar cell with a suitably formulated water splitting cell. A glossary of technical terms is also included, providing a clear explanation of the main concepts.
- Consolidates and analyzes the state-of-the-art in water splitting for hydrogen production
- Offers case studies, visuals, and practical information to support selection, efficiency, and scale-up
- Includes key concepts, fundamental methods, and the context of the future global energy landscape
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Specificații
ISBN-13: 9780443290640
ISBN-10: 0443290644
Pagini: 450
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0443290644
Pagini: 450
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Cuprins
Section I
1. Potential of water splitting in the global energy future
2. Concepts, kinetics and mechanism of water splitting
3. Technologies for water splitting
4. Instrumentation and experimental set-up for measuring hydrogen from water splitting
5. Photocatalytic water splitting
6. Photoelectrochemical water splitting
7. Selection of materials and cell design for water splitting
Section II
8. Noble metal-based catalysts
9. Noble metal free catalysts - oxides, chalcogenides, nitrides, oxynitrides - for water splitting
10. Metal ion incorporated metal oxides for water splitting
11. Plasmonic material and QD sensitized photocatalysts for water splitting
12. Carbon based materials for water splitting
13. MOF assisted water splitting
14. 2D materials for water splitting
15. Conjugated polymer materials for water splitting
16. Role of co-catalysts in water splitting
17. Nanostructured materials for water splitting
Section III
18. Photovoltaic electrochemical integration for water splitting
19. Challenges for photoelectrochemical water splitting technology for the near future Glossary of technical terms
1. Potential of water splitting in the global energy future
2. Concepts, kinetics and mechanism of water splitting
3. Technologies for water splitting
4. Instrumentation and experimental set-up for measuring hydrogen from water splitting
5. Photocatalytic water splitting
6. Photoelectrochemical water splitting
7. Selection of materials and cell design for water splitting
Section II
8. Noble metal-based catalysts
9. Noble metal free catalysts - oxides, chalcogenides, nitrides, oxynitrides - for water splitting
10. Metal ion incorporated metal oxides for water splitting
11. Plasmonic material and QD sensitized photocatalysts for water splitting
12. Carbon based materials for water splitting
13. MOF assisted water splitting
14. 2D materials for water splitting
15. Conjugated polymer materials for water splitting
16. Role of co-catalysts in water splitting
17. Nanostructured materials for water splitting
Section III
18. Photovoltaic electrochemical integration for water splitting
19. Challenges for photoelectrochemical water splitting technology for the near future Glossary of technical terms