Heterostructured Photocatalysts for Solar Energy Conversion: Solar Cell Engineering
Editat de Srabanti Ghoshen Limba Engleză Paperback – 15 oct 2020
The concept of visible light active catalysis emerged in recent decades and continues to attract the scientific community. Driven primarily by an opportunity to develop novel multifunctional materials on one hand, and sustainable technologies on the other, several successful approaches have been explored. However, preparation, characterization, and application of visible light active Z-scheme heterojunction-based catalytic nanostructures are still at the foreground of research activity.
- Provides an overview on recently developed Z-scheme photocatalysts to stress their performance as catalysts
- Covers most of the important topics in photocatalysis
- Explores the most recent advances in synthesis to enable deeper understanding of the principles underlying electronic behavior of catalytic nanostructures, mechanistic details, and the evaluation of their effectiveness, as well as perspectives in solar light harvesting
- Serves as a valuable resource for better understanding of the current state of photocatalysis research and its possible applications in energy domain
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Specificații
ISBN-13: 9780128200728
ISBN-10: 0128200723
Pagini: 384
Ilustrații: Approx. 150 illustrations
Dimensiuni: 152 x 229 mm
Greutate: 0.51 kg
Editura: ELSEVIER SCIENCE
Seria Solar Cell Engineering
ISBN-10: 0128200723
Pagini: 384
Ilustrații: Approx. 150 illustrations
Dimensiuni: 152 x 229 mm
Greutate: 0.51 kg
Editura: ELSEVIER SCIENCE
Seria Solar Cell Engineering
Public țintă
Materials Scientists and Engineers in R&D and academia, Chemical EngineersCuprins
1. Heterogeneous photocatalysis: Z-scheme based heterostructures
2. Atomic and electronic structure of direct Z-scheme photocatalyst: From fundamentals to applications
3. Photocatalytic H2 generation using Z-scheme heterostructures through water reduction
4. Photocatalytic water splitting using Z-scheme heterostructures
5. Z-scheme based heterostructures for organic pollutant degradation
6. Z-scheme based heterostructures for CO2 reduction
7. TiO2 based Z-scheme photocatalysts for photocatalytic applications
8. Bismuth based Z-scheme heterostructures for photocatalysts
9. Development of graphitic carbon nitride-based Z-scheme photocatalysts
2. Atomic and electronic structure of direct Z-scheme photocatalyst: From fundamentals to applications
3. Photocatalytic H2 generation using Z-scheme heterostructures through water reduction
4. Photocatalytic water splitting using Z-scheme heterostructures
5. Z-scheme based heterostructures for organic pollutant degradation
6. Z-scheme based heterostructures for CO2 reduction
7. TiO2 based Z-scheme photocatalysts for photocatalytic applications
8. Bismuth based Z-scheme heterostructures for photocatalysts
9. Development of graphitic carbon nitride-based Z-scheme photocatalysts