Susai, F.A.; Talianker, M.; Liu, J.; Rosy; Paul, T.; Grinblat, Y.; Erickson, E.; Noked, M.; Burstein, L.; Frenkel, A.I.;
et al. Electrochemical Activation of Li2MnO3 Electrodes at 0 °C and Its Impact on the Subsequent Performance at Higher Temperatures. Materials 2020, 13, 4388.
https://doi.org/10.3390/ma13194388
AMA Style
Susai FA, Talianker M, Liu J, Rosy, Paul T, Grinblat Y, Erickson E, Noked M, Burstein L, Frenkel AI,
et al. Electrochemical Activation of Li2MnO3 Electrodes at 0 °C and Its Impact on the Subsequent Performance at Higher Temperatures. Materials. 2020; 13(19):4388.
https://doi.org/10.3390/ma13194388
Chicago/Turabian Style
Susai, Francis Amalraj, Michael Talianker, Jing Liu, Rosy, Tanmoy Paul, Yehudit Grinblat, Evan Erickson, Malachi Noked, Larisa Burstein, Anatoly I. Frenkel,
and et al. 2020. "Electrochemical Activation of Li2MnO3 Electrodes at 0 °C and Its Impact on the Subsequent Performance at Higher Temperatures" Materials 13, no. 19: 4388.
https://doi.org/10.3390/ma13194388
APA Style
Susai, F. A., Talianker, M., Liu, J., Rosy, Paul, T., Grinblat, Y., Erickson, E., Noked, M., Burstein, L., Frenkel, A. I., Tsur, Y., Markovsky, B., & Aurbach, D.
(2020). Electrochemical Activation of Li2MnO3 Electrodes at 0 °C and Its Impact on the Subsequent Performance at Higher Temperatures. Materials, 13(19), 4388.
https://doi.org/10.3390/ma13194388