Zugriffsnummer 47739
Dokumenttyp Zeitschriftenartikel Open Access Gold
Peer Review mit Peer Review
Sprache Englisch
Titel Identifying anode and cathode contributions in Li-Ion full cell impedance spectra.
Autor(in); Institution
Heinrich, Marco; 3.1, Allgemeine und Anorganische Chemie, PTB-Braunschweig; TU Braunschweig, Institute of Energy and Process Systems Engineering, Braunschweig, GERMANY; TU Braunschweig, Battery Lab Factory, Braunschweig, GERMANY
Wolff, Nicolas; TU Braunschweig, Institute of Energy and Process Systems Engineering, Braunschweig, GERMANY; TU Braunschweig, Battery Lab Factory, Braunschweig, GERMANY
Seitz, Steffen; 3.1, Allgemeine und Anorganische Chemie, PTB-Braunschweig; TU Braunschweig, Battery Lab Factory, Braunschweig, GERMANY
Krewer, Ulrike; TU Braunschweig, Institute of Energy and Process Systems Engineering, Braunschweig, GERMANY; TU Braunschweig, Battery Lab Factory, Braunschweig, GERMANY; Institute for Applied Materials - Electrochemical Technologies, Karlsruhe Institute of Technology, Karlsruhe, GERMANY
Quelle/Jahr Batteries: 8 (2022), 5, 1 - 16
Artikelnummer 40
Availability [online only]
ISSN 2313-0105
DOI
Verlag Basel: MDPI
Freie Schlagworte electrochemical impedance spectroscopy ; modelling ; equivalent circuit model ; process-identification ; time constants ; temperature distribution ; measurement
Zusammenfassung Measured impedance spectra of Li-ion battery cells are often reproduced with equivalent circuits or physical models to determine losses due to charge transfer processes at the electrodes. The identified model parameters can usually not readily or unambiguously be assigned to the anode and the cathode. A new measurement method is presented that enables the assignment of features of impedance spectra of full cells to single electrodes. To this end, temperature gradients are imprinted perpendicular to the electrode layers of a single-layered Li-ion battery cell while impedance spectra are measured. The method exploits different dependences of the charge transfer processes at the electrodes on temperature. An equivalent circuit model of RC-elements and the effect of temperature on the related electrode properties is discussed to demonstrate the feasibility of the method. A reliable assignment of the change of impedance spectra to the electrode processes is shown to be possible. The assignment can be used to identify if changes in an impedance spectrum originate from the anode or the cathode.
Kostenfreier Zugang Open Access Gold
Rechteinformation CC BY 4.0 ; Creative Commons Attribution 4.0 License
Themenbereich der Metrologie Metrologie in der Chemie und Stoffeigenschaften

Zitierung

Heinrich, M., Wolff, N., Seitz, S., & Krewer, U. (2022). Identifying anode and cathode contributions in Li-Ion full cell impedance spectra. Batteries, 8(5), 1–16. https://doi.org/10.3390/batteries8050040

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