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Development of membrane materials for direct methanol fuel cells

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Development of membrane materials for direct methanol fuel cells ( development-membrane-materials-direct-methanol-fuel-cells )

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Chapter 5 Micro-structured Nafion membranes for DMFC applications for direct methanol fuel cell. Journal of Power Sources, 2008. 178(1): p. 9. 17. Byun, S.C., Jeong, Y.J., Park, J.W., Kim, S.D., Ha, H.Y., and Kim, W.J., Effect of solvent and crystal size on the selectivity of ZSM- 5/Nafion composite membranes fabricated by solution-casting method. Solid State Ionics, 2006. 177(37-38): p. 3233. 18. Zhang, Y., Lu, J., Shimano, S., Zhou, H., and Maeda, R., Development of MEMS-based direct methanol fuel cell with high power density using nanoimprint technology. Electrochemistry Communications, 2007. 9(6): p. 1365. 19. Guo, L.J., Recent progress in nanoimprint technology and its applications. Journal of Physics D: Applied Physics, 2004. 37(11): p. R123. 20. Gomes, D., Roeder, J., Ponce, M.L., and Nunes, S.P., Characterization of partially sulfonated polyoxadiazoles and oxadiazole-triazole copolymers. Journal of Membrane Science, 2007. 295(1-2): p. 121. 21. Luan, Y., Zhang, Y., Zhang, H., Li, L., Li, H., and Liu, Y., Annealing effect of perfluorosulfonated ionomer membranes on proton conductivity and methanol permeability. Journal of Applied Polymer Science, 2008. 107(1): p. 396. 22. Sone, Y., Ekdunge, P., and Simonsson, D., Proton Conductivily of Nafion 117 as Measured by a Four-Electrode AC Impedance Method. Journal Electrochemical Soc., 1996. 143(4): p. 1254-1259. 23. Liang, Z., W.Chen, J.Liu, S.Wang, Z.Zhou, W.Li, G.Sun, and Q.Xin, FT-IR study of the microstructure of Nafion membrane. Journal of Membrane Science, 2004. 233(39). 24. J.E.Hensley, J.D.Way, S.F.Dec, and K.D.Abney, The effects of thermal annealing on commercial Nafion membranes. Journal of Membrane Science, 2007. 298: p. 190-201. 85

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