A combined SECM and electrochemical AFM approach to probe interfacial processes affecting molecular reactivity at redox flow battery electrodes
Understanding interfacial reaction mechanisms of redoxmers at redox flow battery model carbon electrodes using insightful electrochemical scanning probe techniques enables new strategies for high-performance energy storage.
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Published in | Journal of materials chemistry. A, Materials for energy and sustainability Vol. 8; no. 31 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
Royal Society of Chemistry
04.03.2020
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Subjects | |
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Abstract | Understanding interfacial reaction mechanisms of redoxmers at redox flow battery model carbon electrodes using insightful electrochemical scanning probe techniques enables new strategies for high-performance energy storage. |
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AbstractList | Understanding interfacial reaction mechanisms of redoxmers at redox flow battery model carbon electrodes using insightful electrochemical scanning probe techniques enables new strategies for high-performance energy storage. |
Author | Zhang, Jingjing Zhang, Lu Sarbapalli, Dipobrato Zavadil, Kevin R. Danis, Andrew S. Watkins, Tylan S. Counihan, Michael J. Rodríguez-López, Joaquín |
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SubjectTerms | ENERGY STORAGE redoxmer, flow battery, surface reaction |
Title | A combined SECM and electrochemical AFM approach to probe interfacial processes affecting molecular reactivity at redox flow battery electrodes |
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