Sie sind bereits eingeloggt. Klicken Sie auf 2. tolino select Abo, um fortzufahren.
Bitte loggen Sie sich zunächst in Ihr Kundenkonto ein oder registrieren Sie sich bei bücher.de, um das eBook-Abo tolino select nutzen zu können.
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.…mehr
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.
Inhaltsangabe
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.
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.
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.
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.
Es gelten unsere Allgemeinen Geschäftsbedingungen: www.buecher.de/agb
Impressum
www.buecher.de ist ein Internetauftritt der buecher.de internetstores GmbH
Geschäftsführung: Monica Sawhney | Roland Kölbl | Günter Hilger
Sitz der Gesellschaft: Batheyer Straße 115 - 117, 58099 Hagen
Postanschrift: Bürgermeister-Wegele-Str. 12, 86167 Augsburg
Amtsgericht Hagen HRB 13257
Steuernummer: 321/5800/1497