Photovoltaics Beyond Silicon: Innovative Materials, Sustainable Processing Technologies, and Novel Device Structures: Solar Cell Engineering
Editat de Senthilarasu Sundaram, Velumani Subramaniam, Ryne P. Raffaelle, Mohammad Khaja Nazeeruddin, Arturo Morales-Acevedo, María Bernechea Navarro, Aloysius F. Heppen Limba Engleză Paperback – 28 iun 2024
- Presents a comprehensive overview and detailed discussion of solar energy technology options for sustainable energy conversion
- Provides an understanding of the environmental challenges to be overcome and discusses the importance of efficient materials utilization for clean energy
- Looks at how to design materials processing and optimize device fabrication, including metrics such as power-to-weight ratio, effectiveness at EOL compared to BOL, life-cycle analysis
Preț: 1245.67 lei
Preț vechi: 1368.86 lei
-9% Nou
Puncte Express: 1869
Preț estimativ în valută:
238.39€ • 250.72$ • 198.58£
238.39€ • 250.72$ • 198.58£
Carte tipărită la comandă
Livrare economică 27 decembrie 24 - 10 ianuarie 25
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9780323901888
ISBN-10: 0323901883
Pagini: 818
Ilustrații: 100 illustrations (30 in full color)
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Solar Cell Engineering
ISBN-10: 0323901883
Pagini: 818
Ilustrații: 100 illustrations (30 in full color)
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Solar Cell Engineering
Cuprins
Section I: Photovoltaics: Background, technologies, and innovation
1. Photovoltaics overview: Historical background and current technologies
2. Third-generation photovoltaics: Introduction, overview, innovation, and potential markets
Section II: Perovskite materials and devices
3. Perovskite solar cells: Past, present, and future
4. Modeling perovskite solar cells
5. Optical design of perovskite solar cells
6. Organic hole-transporting materials for perovskite solar cells: Progress and prospects
Section III: Alternative photovoltaic materials
7. Fabrication strategies to enhance the performance of dye-sensitized solar cells
8. Development of active layer materials for solution-processable organic photovoltaics
9. Overview of copper zinc tin sulfide thin film solar cells
Section IV: Green and sustainable aspects of photovoltaics
10. Nature-inspired and computer-aided approaches to enable improved photovoltaic materials, more efficient processing, and novel devices
11. Green chemical synthesis of photovoltaic materials
12. Sustainable solution-processed solar cells based on environmentally friendly nanocrystals
13. Life cycle assessment of renewable energy from solar photovoltaic technologies
Section V: Concentrator and multijunction devices
14. Concentrator and multijunction solar cells
15. All perovskite tandem solar cells
16. Recent advances in perovskite-containing tandem structures
Section VI: Practical applications of photovoltaics
17. Transparent photovoltaics: overview and applications
18. Photovoltaic-powered vehicles: current trends and future prospects
19. Space photovoltaics: new technologies, environmental challenges, and missions
1. Photovoltaics overview: Historical background and current technologies
2. Third-generation photovoltaics: Introduction, overview, innovation, and potential markets
Section II: Perovskite materials and devices
3. Perovskite solar cells: Past, present, and future
4. Modeling perovskite solar cells
5. Optical design of perovskite solar cells
6. Organic hole-transporting materials for perovskite solar cells: Progress and prospects
Section III: Alternative photovoltaic materials
7. Fabrication strategies to enhance the performance of dye-sensitized solar cells
8. Development of active layer materials for solution-processable organic photovoltaics
9. Overview of copper zinc tin sulfide thin film solar cells
Section IV: Green and sustainable aspects of photovoltaics
10. Nature-inspired and computer-aided approaches to enable improved photovoltaic materials, more efficient processing, and novel devices
11. Green chemical synthesis of photovoltaic materials
12. Sustainable solution-processed solar cells based on environmentally friendly nanocrystals
13. Life cycle assessment of renewable energy from solar photovoltaic technologies
Section V: Concentrator and multijunction devices
14. Concentrator and multijunction solar cells
15. All perovskite tandem solar cells
16. Recent advances in perovskite-containing tandem structures
Section VI: Practical applications of photovoltaics
17. Transparent photovoltaics: overview and applications
18. Photovoltaic-powered vehicles: current trends and future prospects
19. Space photovoltaics: new technologies, environmental challenges, and missions