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Xinzhuang Fan
Xinzhuang Fan
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Cited by
Cited by
Year
Boron doped multi-walled carbon nanotubes as catalysts for oxygen reduction reaction and oxygen evolution reactionin in alkaline media
Y Cheng, Y Tian, X Fan, J Liu, C Yan
Electrochimica Acta 143, 291-296, 2014
1282014
Reversible redox reaction on the oxygen-containing functional groups of an electrochemically modified graphite electrode for the pseudo-capacitance
X Fan, Y Lu, H Xu, X Kong, J Wang
Journal of Materials Chemistry 21 (46), 18753-18760, 2011
1102011
Redox flow batteries: fundamentals and applications
H Zhang, X Li, J Zhang
CRC Press, 2017
882017
CeO2 embedded electrospun carbon nanofibers as the advanced electrode with high effective surface area for vanadium flow battery
M Jing, X Zhang, X Fan, L Zhao, J Liu, C Yan
Electrochimica Acta 215, 57-65, 2016
872016
Highly catalytic hollow Ti3C2Tx MXene spheres decorated graphite felt electrode for vanadium redox flow batteries
L Wei, C Xiong, HR Jiang, XZ Fan, TS Zhao
Energy Storage Materials 25, 885-892, 2020
812020
A gradient bi-functional graphene-based modified electrode for vanadium redox flow batteries
G Hu, M Jing, DW Wang, Z Sun, C Xu, W Ren, HM Cheng, C Yan, X Fan, ...
Energy Storage Materials 13, 66-71, 2018
802018
Electrospun carbon nanofibers/electrocatalyst hybrids as asymmetric electrodes for vanadium redox flow battery
G Wei, X Fan, J Liu, C Yan
Journal of Power Sources 281, 1-6, 2015
792015
Modified multi-walled carbon nanotube/Ag nanoparticle composite catalyst for the oxygen reduction reaction in alkaline solution
Y Cheng, W Li, X Fan, J Liu, W Xu, C Yan
Electrochimica Acta 111, 635-641, 2013
752013
A novel energy storage system incorporating electrically rechargeable liquid fuels as the storage medium
H Jiang, L Wei, XZ Fan, J Xu, W Shyy, T Zhao
Science Bulletin 64 (4), 270-280, 2019
622019
Effect of the graphitization degree for electrospun carbon nanofibers on their electrochemical activity towards VO2+/VO2+ redox couple
G Wei, W Su, Z Wei, M Jing, X Fan, J Liu, C Yan
Electrochimica Acta 199, 147-153, 2016
592016
A gradient porous electrode with balanced transport properties and active surface areas for vanadium redox flow batteries
HR Jiang, BW Zhang, J Sun, XZ Fan, W Shyy, TS Zhao
Journal of Power Sources 440, 227159, 2019
582019
Investigation of the electrospun carbon web as the catalyst layer for vanadium redox flow battery
G Wei, X Fan, J Liu, C Yan
Journal of Power Sources 270, 634-645, 2014
512014
Improved electrochemical performance for vanadium flow battery by optimizing the concentration of the electrolyte
M Jing, Z Wei, W Su, H He, X Fan, Y Qin, J Liu, C Yan
Journal of Power Sources 324, 215-223, 2016
442016
A new electrocatalyst and its application method for vanadium redox flow battery
G Wei, M Jing, X Fan, J Liu, C Yan
Journal of Power Sources 287, 81-86, 2015
362015
A Li-S battery with ultrahigh cycling stability and enhanced rate capability based on novel ZnO yolk-shell sulfur host
R Zhang, M Wu, X Fan, H Jiang, T Zhao
Journal of Energy Chemistry 55, 136-144, 2021
322021
Anchoring effect of the partially reduced graphene oxide doped electrospun carbon nanofibers on their electrochemical performances in vanadium flow battery
M Jing, Z Xu, D Fang, X Fan, J Liu, C Yan
Journal of Power Sources 425, 94-102, 2019
322019
Analyses and optimization of electrolyte concentration on the electrochemical performance of iron-chromium flow battery
S Wang, Z Xu, X Wu, H Zhao, J Zhao, J Liu, C Yan, X Fan
Applied energy 271, 115252, 2020
302020
Aligned hierarchical electrodes for high-performance aqueous redox flow battery
J Sun, HR Jiang, MC Wu, XZ Fan, CYH Chao, TS Zhao
Applied Energy 271, 115235, 2020
292020
Superior cycling life of Li–S batteries with high sulfur loading enabled by a bifunctional layered-MoO3 cathode
R Zhang, M Wu, X Fan, H Jiang, T Zhao
Journal of Power Sources 436, 226840, 2019
292019
Advances in the design and fabrication of high-performance flow battery electrodes for renewable energy storage
J Sun, M Wu, H Jiang, X Fan, T Zhao
Advances in Applied Energy 2, 100016, 2021
282021
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