1 |
Redox dynamics of manganese as a mitochondrial life-death switch Smith MR, Fernandes J, Go YM, Jones DP Biochemical and Biophysical Research Communications, 482(3), 388, 2017 |
2 |
Solvents and supporting electrolytes for vanadium acetylacetonate flow batteries Shinkle AA, Pomaville TJ, Sleightholme AES, Thompson LT, Monroe CW Journal of Power Sources, 248, 1299, 2014 |
3 |
Increasing the energy density of the non-aqueous vanadium redox flow battery with the acetonitrile-1,3-dioxolane-dimethyl sulfoxide solvent mixture Herr T, Fischer P, Tubke J, Pinkwart K, Elsner P Journal of Power Sources, 265, 317, 2014 |
4 |
1,3-Dioxolane, tetrahydrofuran, acetylacetone and dimethyl sulfoxide as solvents for non-aqueous vanadium acetylacetonate redox-flow-batteries Herr T, Noack J, Fischer P, Tubke J Electrochimica Acta, 113, 127, 2013 |
5 |
Degradation mechanisms in the non-aqueous vanadium acetylacetonate redox flow battery Shinkle AA, Sleightholme AES, Griffith LD, Thompson LT, Monroe CW Journal of Power Sources, 206, 490, 2012 |
6 |
Electrode kinetics in non-aqueous vanadium acetylacetonate redox flow batteries Shinkle AA, Sleightholme AES, Thompson LT, Monroe CW Journal of Applied Electrochemistry, 41(10), 1191, 2011 |
7 |
Non-aqueous manganese acetylacetonate electrolyte for redox flow batteries Sleightholme AES, Shinkle AA, Liu QH, Li YD, Monroe CW, Thompson LT Journal of Power Sources, 196(13), 5742, 2011 |
8 |
Storage and formation of pure hydrogen mediated by the redox of modified iron oxides Takenaka S, Nomura K, Hanaizumi N, Otsuka K Applied Catalysis A: General, 282(1-2), 333, 2005 |
9 |
A family of (N-salicylidene-alpha-amino acidato)vanadate esters incorporating chelated propane-1,3-diol and glycerol : Synthesis, structure, and reaction Mondal S, Rath SP, Rajak KK, Chakravorty A Inorganic Chemistry, 37(8), 1713, 1998 |
10 |
Electrochemical reduction of copper(II) salen at carbon cathodes in dimethylformamide Samide MJ, Peters DG Journal of Electroanalytical Chemistry, 443(1), 95, 1998 |