Ezeigwe, E.R.; Woll, S.A.; Erichsen, L.T.B.; Solberg, S.B.B.; Hughes, G.M.; Du, W.; Lamb, J.J.; Wind, J.; Lian, T.; Shearing, P.R.;
et al. Degradation of a Lithium-Ion Battery Cell for Enhanced First and Second Life: Effects of Temperature, Orientation, C-Rate and State of Charge. Batteries 2026, 12, 121.
https://doi.org/10.3390/batteries12040121
AMA Style
Ezeigwe ER, Woll SA, Erichsen LTB, Solberg SBB, Hughes GM, Du W, Lamb JJ, Wind J, Lian T, Shearing PR,
et al. Degradation of a Lithium-Ion Battery Cell for Enhanced First and Second Life: Effects of Temperature, Orientation, C-Rate and State of Charge. Batteries. 2026; 12(4):121.
https://doi.org/10.3390/batteries12040121
Chicago/Turabian Style
Ezeigwe, Ejikeme Raphael, Sivert A. Woll, Lene T. B. Erichsen, Simon B. B. Solberg, Gareth M. Hughes, Wenjia Du, Jacob J. Lamb, Julia Wind, Torleif Lian, Paul R. Shearing,
and et al. 2026. "Degradation of a Lithium-Ion Battery Cell for Enhanced First and Second Life: Effects of Temperature, Orientation, C-Rate and State of Charge" Batteries 12, no. 4: 121.
https://doi.org/10.3390/batteries12040121
APA Style
Ezeigwe, E. R., Woll, S. A., Erichsen, L. T. B., Solberg, S. B. B., Hughes, G. M., Du, W., Lamb, J. J., Wind, J., Lian, T., Shearing, P. R., Burheim, O. S., & Vie, P. J. S.
(2026). Degradation of a Lithium-Ion Battery Cell for Enhanced First and Second Life: Effects of Temperature, Orientation, C-Rate and State of Charge. Batteries, 12(4), 121.
https://doi.org/10.3390/batteries12040121