This book addresses the principles and materials for the development of next-generation solar cells for a sustainable global society. It reviews the structures, working principles, and limitations of solar cells as well as the improvement methods of their power-conversion efficiency.
This book addresses the principles and materials for the development of next-generation solar cells for a sustainable global society. It reviews the structures, working principles, and limitations of solar cells as well as the improvement methods of their power-conversion efficiency.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Yoon-Bong Hahn is a Regents Professor of Jeonbuk National University (JBNU), South Korea, and is a fellow of the Korea Academy of Science and Technology (KAST), American Ceramic Society (ACerS), and the International Association of Advanced Materials (IAAM). He received his PhD in metallurgical engineering from the University of Utah, USA, in 1988, after which he started working at the research center of LG Metals, Korea, until 1991 when he joined JBNU. His research focuses on the synthesis of metal and metal oxide nanostructures and their applications in solar cells, chemical and biological sensors, and printed electronics. Tahmineh Mahmoudi is a researcher working in collaboration with the Prof. Yoon-Bong Hahn group at the Advanced nano-Materials Processing Laboratory (AMPL), School of Semiconductor and Chemical Engineering, JBNU. She received her PhD in chemical engineering from JBNU in 2015. Her research focuses on metal oxides and graphene-based materials and their applications for hybrid and perovskite solar cells. Yousheng Wang is an associate professor at the Institute of New Energy Technology, Jinan University, China, since 2019. He received his PhD in semiconductor and chemical engineering from JBNU, where he later became a postdoctoral fellow. His research focuses on the development of hybrid perovskite composites and their applications for next-generation solar cells.
Inhaltsangabe
1. Electromagnetic Radiation 2. Physics and Properties of Semiconductors 3. Working Principles and Limitations of Solar Cells 4. Generations of Solar Cells 5. Organic Solar Cells 6. Quantum Dot Solar Cells 7. Organic-Inorganic Hybrid Solar Cells 8. Perovskite Solar Cells 9. Structures, Transport Materials, and Deposition Methods for Perovskite Solar Cells 10. Defects and Ions Migration in Perovskite Solar Cells 11. Quantum Dots, Tandem, and Lead-Free Perovskite Solar Cells 12. Composites-Based Efficient and Stable Perovskite Solar Cells with Interface Engineering 13. Characterization of Solar Cell Materials and Devices
1. Electromagnetic Radiation 2. Physics and Properties of Semiconductors 3. Working Principles and Limitations of Solar Cells 4. Generations of Solar Cells 5. Organic Solar Cells 6. Quantum Dot Solar Cells 7. Organic-Inorganic Hybrid Solar Cells 8. Perovskite Solar Cells 9. Structures, Transport Materials, and Deposition Methods for Perovskite Solar Cells 10. Defects and Ions Migration in Perovskite Solar Cells 11. Quantum Dots, Tandem, and Lead-Free Perovskite Solar Cells 12. Composites-Based Efficient and Stable Perovskite Solar Cells with Interface Engineering 13. Characterization of Solar Cell Materials and Devices
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