Development of Redox Mediators for High-Energy-Density and High-Efficiency Lithium-Oxygen Batteries
Seiten
2022
|
1st ed. 2021
Springer Verlag, Singapore
978-981-16-2534-3 (ISBN)
Springer Verlag, Singapore
978-981-16-2534-3 (ISBN)
This thesis addresses the introduction of redox mediator into lithium-oxygen batteries to improve their electrochemical performance especially in terms of practical energy density and round-trip efficiency. In chapter 1, basic electrochemistry regarding lithium-oxygen batteries and redox mediators are introduced. In chapter 2 to 4, comprehensive researches including the discovery of a new redox mediator inspired by biological system, the investigation on kinetic property of redox mediator, and the prevention of shuttle phenomenon are introduced, followed by chapter 5 summarizing the contents. This thesis is targeted to students and researchers interested in electrochemistry and energy storage systems.
Dr. Youngmin Ko received a B.Sc. degree (2016) and Ph.D. degree (2021) in materials science and engineering from Seoul National University.
Introduction.- Exploring a Novel Redox Mediator Inspired By Biological System.- Investigation on the Kinetic Property of Redox.- Addressing Shuttle Phenomena: Anchored Redox Mediator for Sustainable Redox Mediation.- Conclusion.
Erscheinungsdatum | 14.06.2022 |
---|---|
Reihe/Serie | Springer Theses |
Zusatzinfo | 54 Illustrations, color; 7 Illustrations, black and white; XX, 68 p. 61 illus., 54 illus. in color. |
Verlagsort | Singapore |
Sprache | englisch |
Maße | 155 x 235 mm |
Themenwelt | Naturwissenschaften ► Chemie ► Physikalische Chemie |
Technik ► Maschinenbau | |
Schlagworte | Electrochemisty • Energy Storage System • Lithium-Oxygen Battery • Redox Mediator • Shuttle Phenomenon |
ISBN-10 | 981-16-2534-4 / 9811625344 |
ISBN-13 | 978-981-16-2534-3 / 9789811625343 |
Zustand | Neuware |
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