Pärnamäe, R.; Gurreri, L.; Post, J.; van Egmond, W.J.; Culcasi, A.; Saakes, M.; Cen, J.; Goosen, E.; Tamburini, A.; Vermaas, D.A.;
et al. The Acid–Base Flow Battery: Sustainable Energy Storage via Reversible Water Dissociation with Bipolar Membranes. Membranes 2020, 10, 409.
https://doi.org/10.3390/membranes10120409
AMA Style
Pärnamäe R, Gurreri L, Post J, van Egmond WJ, Culcasi A, Saakes M, Cen J, Goosen E, Tamburini A, Vermaas DA,
et al. The Acid–Base Flow Battery: Sustainable Energy Storage via Reversible Water Dissociation with Bipolar Membranes. Membranes. 2020; 10(12):409.
https://doi.org/10.3390/membranes10120409
Chicago/Turabian Style
Pärnamäe, Ragne, Luigi Gurreri, Jan Post, Willem Johannes van Egmond, Andrea Culcasi, Michel Saakes, Jiajun Cen, Emil Goosen, Alessandro Tamburini, David A. Vermaas,
and et al. 2020. "The Acid–Base Flow Battery: Sustainable Energy Storage via Reversible Water Dissociation with Bipolar Membranes" Membranes 10, no. 12: 409.
https://doi.org/10.3390/membranes10120409
APA Style
Pärnamäe, R., Gurreri, L., Post, J., van Egmond, W. J., Culcasi, A., Saakes, M., Cen, J., Goosen, E., Tamburini, A., Vermaas, D. A., & Tedesco, M.
(2020). The Acid–Base Flow Battery: Sustainable Energy Storage via Reversible Water Dissociation with Bipolar Membranes. Membranes, 10(12), 409.
https://doi.org/10.3390/membranes10120409