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Chueh Group
Приєднався 7 гру 2012
Dr. Iwnetim (Tim) Iwnetu Abate Thesis Defense
Designing Hysteresis Free High-Valent Redox Cathode Materials for Electrochemical Application
Advances in electrochemical devices such as batteries, fuel cells, and water-splitting membranes are making global transition towards clean and renewable energy more possible than ever. Foundational to (electro)chemical and catalytic transformations in these devices are a stable and reversible high-valent redox couples. In particular, the phenomenon of high-valent oxygen redox (anionic redox) in lithium- and sodium-ion positive electrodes has the potential to significantly improve cell energy density by providing additional high voltage capacity beyond that of most transition metal redox couples. However, the additional capacity from (anionic redox) has come at the expense of reduced reversibility in the form of voltage hysteresis and voltage fade. As a result, high valent redox couples have been historically avoided. In this talk, first, I will outline the mechanism and the framework for understanding the source of poor electrochemical reversibility in high valent redox. Second, I will demonstrate a mechanism where structural disorder and voltage hysteresis can be completely avoided. I will finish my talk by discussing a set of actionable design rules to engineer materials for different applications that involve high-valent redox couple.
Advances in electrochemical devices such as batteries, fuel cells, and water-splitting membranes are making global transition towards clean and renewable energy more possible than ever. Foundational to (electro)chemical and catalytic transformations in these devices are a stable and reversible high-valent redox couples. In particular, the phenomenon of high-valent oxygen redox (anionic redox) in lithium- and sodium-ion positive electrodes has the potential to significantly improve cell energy density by providing additional high voltage capacity beyond that of most transition metal redox couples. However, the additional capacity from (anionic redox) has come at the expense of reduced reversibility in the form of voltage hysteresis and voltage fade. As a result, high valent redox couples have been historically avoided. In this talk, first, I will outline the mechanism and the framework for understanding the source of poor electrochemical reversibility in high valent redox. Second, I will demonstrate a mechanism where structural disorder and voltage hysteresis can be completely avoided. I will finish my talk by discussing a set of actionable design rules to engineer materials for different applications that involve high-valent redox couple.
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Відео
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Thanks for the clear explanations. I just have a problem with slide 15. Could someone explain the reasoning ?
In a cell with a salt bridge, how to prove that Φ is the same in the two electrolytic solutions and in the salt bridge ?
Clarified a lot. Coming from a semiconductors background this gives me a great foothold for electrochem I wouldn't have otherwise had
😍
Not a good presentation. Better to discuss workfunction, absolute cell potential by transatti
Really great talk! Very Interesting!
A great presentation thanks you guys. you make clear my understanding on Electrochemistry🙏
That was a great presentation! Loved the details, always wanted to have this clarity. Looking forward to more uploads from the group.
What an honor it is! A pride to Ethiopia and an inspiration to many of us! Congratulations Dr. Iwnetim.
Sir how can i contact with you as i have some questions regarding electro chemistry
Really interesting your work.