1 |
Analysis of operational characteristics of polymer electrolyte fuel cell with expanded graphite flow-field plates via electrochemical impedance investigation Park T, Chang I, Lee YH, Ji S, Cha SW Energy, 66, 77, 2014 |
2 |
Study on Electrical Conductivity and Mechanical Performance of Polymeric Composite Flow Field Plates for Fuel Cell Applications Zhang ZY, Dhakal HN, Shen M, Bennett N Composite Interfaces, 17(5-7), 633, 2010 |
3 |
Numerical modeling of three-dimensional two-phase gas-liquid flow in the flow field plate of a PEM electrolysis cell Nie JH, Chen YT International Journal of Hydrogen Energy, 35(8), 3183, 2010 |
4 |
Design and Performance Analysis of Micro Proton Exchange Membrane Fuel Cells Zhong ZZ, Chen JX, Peng RG Chinese Journal of Chemical Engineering, 17(2), 298, 2009 |
5 |
A review of water flooding issues in the proton exchange membrane fuel cell Li H, Tang YH, Wang ZW, Shi Z, Wu SH, Song DT, Zhang JL, Fatih K, Zhang JJ, Wang HJ, Liu ZS, Abouatallah R, Mazza A Journal of Power Sources, 178(1), 103, 2008 |
6 |
Measurements of current and water distribution for a micro-PEM fuel cell with different flow fields Hsieh SS, Huang YJ Journal of Power Sources, 183(1), 193, 2008 |
7 |
Modeling of flow field in polymer electrolyte membrane fuel cell Karvonen S, Hottinen T, Saarinen J, Himanen O Journal of Power Sources, 161(2), 876, 2006 |
8 |
Effects of channel and rib widths of flow field plates on the performance of a PEMFC Yoon YG, Lee WY, Park GG, Yang TH, Kim CS International Journal of Hydrogen Energy, 30(12), 1363, 2005 |
9 |
Modeling the influence of GDL and flow-field plate parameters on the reaction distribution in the PEMFC cathode catalyst layer Sun W, Peppley BA, Karan K Journal of Power Sources, 144(1), 42, 2005 |
10 |
Effects of channel configurations of flow field plates on the performance of a PEMFC Yoon YG, Lee WY, Park GG, Yang TH, Kim CS Electrochimica Acta, 50(2-3), 709, 2004 |