Davis, C.M.; Waters, S.E.; Robb, B.H.; Thurston, J.R.; Reber, D.; Marshak, M.P.
Disparate Redox Potentials in Mixed Isomer Electrolytes Reduce Voltage Efficiency of Energy Dense Flow Batteries. Batteries 2023, 9, 573.
https://doi.org/10.3390/batteries9120573
AMA Style
Davis CM, Waters SE, Robb BH, Thurston JR, Reber D, Marshak MP.
Disparate Redox Potentials in Mixed Isomer Electrolytes Reduce Voltage Efficiency of Energy Dense Flow Batteries. Batteries. 2023; 9(12):573.
https://doi.org/10.3390/batteries9120573
Chicago/Turabian Style
Davis, Casey M., Scott E. Waters, Brian H. Robb, Jonathan R. Thurston, David Reber, and Michael P. Marshak.
2023. "Disparate Redox Potentials in Mixed Isomer Electrolytes Reduce Voltage Efficiency of Energy Dense Flow Batteries" Batteries 9, no. 12: 573.
https://doi.org/10.3390/batteries9120573
APA Style
Davis, C. M., Waters, S. E., Robb, B. H., Thurston, J. R., Reber, D., & Marshak, M. P.
(2023). Disparate Redox Potentials in Mixed Isomer Electrolytes Reduce Voltage Efficiency of Energy Dense Flow Batteries. Batteries, 9(12), 573.
https://doi.org/10.3390/batteries9120573