1. Introduction (2.627 Fundamentals of Photovoltaics)
6
2. The Solar Resource
7
3. Light Absorption and Optical Losses
8
4. Charge Excitation
9
5. Charge Separation, Part I: Diode
10
6. Charge Separation, Part II: Diode Under Illumination
11
8. Toward a 1D Device Model, Part II: Material Fundamentals
12
7. Toward a 1D Device Model, Part I: Device Fundamentals
13
9. Charge Extraction
14
10. Wafer Silicon-Based Solar Cells, Part I
15
11. Wafer Silicon-Based Solar Cells, Part II
16
12. Thin Films: Material Choices & Manufacturing, Part I
17
13. Thin Films: Material Choices & Manufacturing, Part II
18
14. PV Efficiency: Measurement and Theoretical Limits
19
15. Advanced Concepts
20
16. Solar Cell Characterization
21
17. Modules, Systems, and Reliability
22
18. Cost, Price, Markets, & Support Mechanisms, Part I
23
19. Cost, Price, Markets, & Support Mechanisms, Part II
24
20. R&D Investment & Innovation in PV
25
Student Project Presentations - Part 1
26
Student Project Presentations - Part 2
Description:
Dive into the fundamentals of photovoltaics with this comprehensive MIT course featuring 20 in-depth lectures, two student project presentation sessions, and four tutorial videos. Explore topics ranging from solar resource and light absorption to advanced concepts in photovoltaic technology. Learn about wafer silicon-based solar cells, thin film materials, manufacturing processes, and PV efficiency measurement. Gain insights into modules, systems, reliability, and the economics of solar energy, including cost, pricing, markets, and support mechanisms. Engage with cutting-edge research and development in the field of photovoltaics through lectures on innovation and investment. Enhance your understanding with practical tutorials on texturing, doping, photoconductivity, and solar cell operation.