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Effect of graphite felt properties on the long-term durability of negative electrode in vanadium redox flow battery Mazur P, Mrlik J, Pocedic J, Vrana J, Dundalek J, Kosek J, Bystron T Journal of Power Sources, 414, 354, 2019 |
2 |
Electrocatalytic effect of NiO nanoparticles evenly distributed on a graphite felt electrode for vanadium redox flow batteries Yun N, Park JJ, Park OO, Lee KB, Yang JH Electrochimica Acta, 278, 226, 2018 |
3 |
Characterization and electrochemical properties of graphite felt-based electrode modified using an ionomer impregnation approach for vanadium redox flow battery Chou YS, Jeng KT, Yen SC Electrochimica Acta, 251, 109, 2017 |
4 |
High-performance zinc bromine flow battery via improved design of electrolyte and electrode Wu MC, Zhao TS, Jiang HR, Zeng YK, Ren YX Journal of Power Sources, 355, 62, 2017 |
5 |
Microwave-assisted preparation of carbon nanofiber-functionalized graphite felts as electrodes for polymer-based redox-flow batteries Schwenke AM, Janoschka T, Stolze C, Martin N, Hoeppener S, Schubert US Journal of Power Sources, 335, 155, 2016 |
6 |
The electrochemical characterisation of graphite felts Smith REG, Davies TJ, Baynes ND, Nichols RJ Journal of Electroanalytical Chemistry, 747, 29, 2015 |
7 |
All-vanadium redox flow batteries with graphite felt electrodes treated by atmospheric pressure plasma jets Chen JZ, Liao WY, Hsieh WY, Hsu CC, Chen YS Journal of Power Sources, 274, 894, 2015 |
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Electrochemical activation of graphite felt electrode for VO2+/VO2+ redox couple application Zhang WG, Xi JY, Li ZH, Zhou HP, Liu L, Wu ZH, Qiu XP Electrochimica Acta, 89, 429, 2013 |
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The characterization of graphite felt electrode with surface modification for H-2/Br-2 fuel cell Zhang LS, Shao ZG, Wang XY, Yu HM, Liu S, Yi BL Journal of Power Sources, 242, 15, 2013 |
10 |
Electrochemical evaluation of the reaction rate between methyl viologen mediator and diaphorase enzyme for the electrocatalytic reduction of NAD(+) and digital simulation for its voltammetric responses Kim S, Yun SE, Kang C Journal of Electroanalytical Chemistry, 465(2), 153, 1999 |