1 |
Polypropylene/polyethylene multilayer separators with enhanced thermal stability for lithium-ion battery via multilayer coextrusion Li YJ, Pu HT, Wei YL Electrochimica Acta, 264, 140, 2018 |
2 |
Ionic transportation and chemical stability of high-endurance porous polyethylene separator for vanadium redox flow batteries Jung HY, Moon GO, Sadhasivam T, Jin CS, Park WS, Kim HT, Roh SH Solid State Ionics, 327, 110, 2018 |
3 |
Direct glycerol fuel cell with polytetrafluoroethylene (PTFE) thin film separator Benipal N, Qi J, Gentile JC, Li WZ Renewable Energy, 105, 647, 2017 |
4 |
Modeling of ion transport through a porous separator in vanadium redox flow batteries Zhou XL, Zhao TS, An L, Zeng YK, Wei L Journal of Power Sources, 327, 67, 2016 |
5 |
Separators used in microbial electrochemical technologies: Current status and future prospects Daud SM, Kim BH, Ghasemi M, Daud WRW Bioresource Technology, 195, 170, 2015 |
6 |
Preparation and Properties of Poly (vinylidene fluoride)/poly(dimethylsiloxane) graft (poly(propylene Oxide)-block-poly(ethylene oxide)) blend porous separators and corresponding electrolytes Li H, Zhang H, Liang ZY, Chen YM, Zhu BK, Zhu LP Electrochimica Acta, 116, 413, 2014 |
7 |
Enhanced performance of modified HDPE separators generated from surface enrichment of polyether chains for lithium ion secondary battery Shi JL, Fang LF, Li H, Liang ZY, Zhu BK, Zhu LP Journal of Membrane Science, 429, 355, 2013 |
8 |
Gel polymer electrolytes based on active PVDF separator for lithium ion battery. I: Preparation and property of PVDF/poly(dimethylsiloxane) blending membrane Li H, Chen YM, Ma XT, Shi JL, Zhu BK, Zhu LP Journal of Membrane Science, 379(1-2), 397, 2011 |
9 |
Effects of non-linear kinetics on free convection in an electrochemical cell with a porous separator Borg KI, Birgersson KE, Bark FH Journal of Applied Electrochemistry, 37(11), 1287, 2007 |
10 |
0.4 Ah class graphite/LiMn2O4 lithium-ion battery prototypes Appetecchi GB, Prosini PP Journal of Power Sources, 146(1-2), 793, 2005 |