61 |
A deep eutectic solvent (DES) electrolyte-based vanadium-iron redox flow battery enabling higher specific capacity and improved thermal stability Xu Q, Qin LY, Ji YN, Leung PK, Su HN, Qiao F, Yang WW, Shah AA, Li HM Electrochimica Acta, 293, 426, 2019 |
62 |
Stable positive electrolyte containing high-concentration Fe-2(SO4)(3) for vanadium flow battery at 50 degrees C Li ZH, Lin YQ, Wan L, Wang BG Electrochimica Acta, 309, 148, 2019 |
63 |
ZrO2 nanoparticle embedded carbon nanofibers by electrospinning technique as advanced negative electrode materials for vanadium redox flow battery He ZX, Li MM, Li YH, Li CC, Yi Z, Zhu J, Dai L, Meng W, Zhou HZ, Wang L Electrochimica Acta, 309, 166, 2019 |
64 |
Mitigating capacity decay and improving charge-discharge performance of a vanadium redox flow battery with asymmetric operating conditions Lu MY, Yang WW, Deng YM, Li WZ, Xu Q, He YL Electrochimica Acta, 309, 283, 2019 |
65 |
A dynamic model for discharge research of zinc-nickel single flow battery Yao SG, Zhao YH, Sun XF, Zhao Q, Cheng J Electrochimica Acta, 307, 573, 2019 |
66 |
Modelling the rheology and electrochemical performance of Li4Ti5O12 and LiNi1/3Co1/3Mn1/3O2 based suspensions for semi-solid flow batteries Lacroix R, Biendicho JJ, Mulder G, Sanz L, Flox C, Morante JR, Da Silva S Electrochimica Acta, 304, 146, 2019 |
67 |
Revealing sulfuric acid concentration impact on comprehensive performance of vanadium electrolytes and flow batteries Zhao Y, Liu L, Qiu XP, Xi JY Electrochimica Acta, 303, 21, 2019 |
68 |
Dimerization of 9,10-anthraquinone-2,7-Disulfonic acid (AQDS) Wiberg C, Carney TJ, Brushett F, Ahlberg E, Wang EG Electrochimica Acta, 317, 478, 2019 |
69 |
Layer-by-Layer modification of graphite felt with MWCNT for vanadium redox flow battery Etienne M, Vivo-Vilches JF, Vakulko I, Genois C, Liu L, Perdicakis M, Hempelmann R, Walcarius A Electrochimica Acta, 313, 131, 2019 |
70 |
Visualized cell characteristics by a two-dimensional model of vanadium redox flow battery with interdigitated channel and thin active electrode Ishitobi H, Saito J, Sugawara S, Oba K, Nakagawa N Electrochimica Acta, 313, 513, 2019 |