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Published by Taylor & Francis Ltd, 2026
ISBN 10: 103261417X ISBN 13: 9781032614175
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Condition: New. Meicheng Li (???) is a Fellow of the Royal Society of Chemistry, a Yangtze River Scholars Distinguished Professor of Ministry of Education, the Director of the New Energy Materials and Devices Research Center, and the Dean of the School of New Ene.
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Published by Taylor & Francis Ltd Jun 2026, 2026
ISBN 10: 103261417X ISBN 13: 9781032614175
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Taschenbuch. Condition: Neu. Neuware - Perovskite solar cells (PSCs) have attracted increasing interest from researchers due to their superb power conversion efficiencies. The intrinsic trap defects, unavoidably formed in the fabrication process, can induce nonradiative recombination, ion migration, I-V hysteresis, and instability of PSCs. However, trap defects are not always harmful. Fully understanding the fundamentals of trap defects as well as the passivation and doping strategies is helpful for further improving device efficiency and stability. This book summarizes the methods and strategies of defect passivation and material doping aiming to clearly describe the underlying mechanisms for high-efficiency and stable PSCs.ż Introduces the fundamental characteristics of perovskite material defectsż Discusses the main strategies, principles, and applications of defect passivationż Describes defect passivation consequences and characterization methodsż Covers principles, methods, and applications of doping engineering in perovskitesż Explores the structural design, advantages, characteristics, fabrication methods, and future development of perovskite homojunctionEngineers and researchers working with photovoltaic generation, solar cells, semiconductors, and related topics will find this book to be an invaluable resource.
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Published by Taylor & Francis Ltd, 2025
ISBN 10: 1032614161 ISBN 13: 9781032614168
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Published by Taylor & Francis Ltd, London, 2026
ISBN 10: 103261417X ISBN 13: 9781032614175
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Paperback. Condition: new. Paperback. Perovskite solar cells (PSCs) have attracted increasing interest from researchers due to their superb power conversion efficiencies. The intrinsic trap defects, unavoidably formed in the fabrication process, can induce nonradiative recombination, ion migration, I-V hysteresis, and instability of PSCs. However, trap defects are not always harmful. Fully understanding the fundamentals of trap defects as well as the passivation and doping strategies is helpful for further improving device efficiency and stability. This book summarizes the methods and strategies of defect passivation and material doping aiming to clearly describe the underlying mechanisms for high-efficiency and stable PSCs. Introduces the fundamental characteristics of perovskite material defects Discusses the main strategies, principles, and applications of defect passivation Describes defect passivation consequences and characterization methods Covers principles, methods, and applications of doping engineering in perovskites Explores the structural design, advantages, characteristics, fabrication methods, and future development of perovskite homojunctionEngineers and researchers working with photovoltaic generation, solar cells, semiconductors, and related topics will find this book to be an invaluable resource. Understanding the fundamentals of trap defects as well as passivation and doping strategies in perovskite solar cells is helpful for improving device efficiency and stability. This book summarizes the strategies of defect passivation and material doping to clearly describe the underlying mechanisms for high-efficiency and stable PSCs. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Published by Taylor & Francis Ltd, London, 2026
ISBN 10: 103261417X ISBN 13: 9781032614175
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Paperback. Condition: new. Paperback. Perovskite solar cells (PSCs) have attracted increasing interest from researchers due to their superb power conversion efficiencies. The intrinsic trap defects, unavoidably formed in the fabrication process, can induce nonradiative recombination, ion migration, I-V hysteresis, and instability of PSCs. However, trap defects are not always harmful. Fully understanding the fundamentals of trap defects as well as the passivation and doping strategies is helpful for further improving device efficiency and stability. This book summarizes the methods and strategies of defect passivation and material doping aiming to clearly describe the underlying mechanisms for high-efficiency and stable PSCs. Introduces the fundamental characteristics of perovskite material defects Discusses the main strategies, principles, and applications of defect passivation Describes defect passivation consequences and characterization methods Covers principles, methods, and applications of doping engineering in perovskites Explores the structural design, advantages, characteristics, fabrication methods, and future development of perovskite homojunctionEngineers and researchers working with photovoltaic generation, solar cells, semiconductors, and related topics will find this book to be an invaluable resource. Understanding the fundamentals of trap defects as well as passivation and doping strategies in perovskite solar cells is helpful for improving device efficiency and stability. This book summarizes the strategies of defect passivation and material doping to clearly describe the underlying mechanisms for high-efficiency and stable PSCs. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Language: English
Published by Taylor & Francis Ltd, London, 2026
ISBN 10: 103261417X ISBN 13: 9781032614175
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Paperback. Condition: new. Paperback. Perovskite solar cells (PSCs) have attracted increasing interest from researchers due to their superb power conversion efficiencies. The intrinsic trap defects, unavoidably formed in the fabrication process, can induce nonradiative recombination, ion migration, I-V hysteresis, and instability of PSCs. However, trap defects are not always harmful. Fully understanding the fundamentals of trap defects as well as the passivation and doping strategies is helpful for further improving device efficiency and stability. This book summarizes the methods and strategies of defect passivation and material doping aiming to clearly describe the underlying mechanisms for high-efficiency and stable PSCs. Introduces the fundamental characteristics of perovskite material defects Discusses the main strategies, principles, and applications of defect passivation Describes defect passivation consequences and characterization methods Covers principles, methods, and applications of doping engineering in perovskites Explores the structural design, advantages, characteristics, fabrication methods, and future development of perovskite homojunctionEngineers and researchers working with photovoltaic generation, solar cells, semiconductors, and related topics will find this book to be an invaluable resource. Understanding the fundamentals of trap defects as well as passivation and doping strategies in perovskite solar cells is helpful for improving device efficiency and stability. This book summarizes the strategies of defect passivation and material doping to clearly describe the underlying mechanisms for high-efficiency and stable PSCs. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Language: English
Published by Taylor & Francis Ltd, London, 2025
ISBN 10: 1032614161 ISBN 13: 9781032614168
Seller: CitiRetail, Stevenage, United Kingdom
Hardcover. Condition: new. Hardcover. Perovskite solar cells (PSCs) have attracted increasing interest from researchers due to their superb power conversion efficiencies. The intrinsic trap defects, unavoidably formed in the fabrication process, can induce nonradiative recombination, ion migration, I-V hysteresis, and instability of PSCs. However, trap defects are not always harmful. Fully understanding the fundamentals of trap defects as well as the passivation and doping strategies is helpful for further improving device efficiency and stability. This book summarizes the methods and strategies of defect passivation and material doping aiming to clearly describe the underlying mechanisms for high-efficiency and stable PSCs. Introduces the fundamental characteristics of perovskite material defects Discusses the main strategies, principles, and applications of defect passivation Describes defect passivation consequences and characterization methods Covers principles, methods, and applications of doping engineering in perovskites Explores the structural design, advantages, characteristics, fabrication methods, and future development of perovskite homojunctionEngineers and researchers working with photovoltaic generation, solar cells, semiconductors, and related topics will find this book to be an invaluable resource. Understanding the fundamentals of trap defects as well as passivation and doping strategies in perovskite solar cells is helpful for improving device efficiency and stability. This book summarizes the strategies of defect passivation and material doping to clearly describe the underlying mechanisms for high-efficiency and stable PSCs. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
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Buch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Understanding the fundamentals of trap defects as well as passivation and doping strategies in perovskite solar cells is helpful for improving device efficiency and stability. This book summarizes the strategies of defect passivation and material doping to clearly describe the underlying mechanisms for high-efficiency and stable PSCs.