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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 2 Dimensionally stable N-PE composite membranes for DMFC applications • Dr. Gijs Calis and Ir. Harold Smelt (DSM Solutech, The Netherlands) for supplying the N-PE membranes and discussions. • Dr. Bernard Boukamp (University of Twente) for building the conductiv- ity set-up. • Dr. Bernd Bauer (FumaTech GmbH, Germany) and Dr. Ronald Mallant (ECN, The Netherlands) for discussions and suggestions concerning this work. References 1. S. Surampudi, Narayanan, S. R., Vamos, E., Frank, H., Halpert, G., LaConti, A., Kosek, J., Prakash, G. K. Surya, and Olah, G. A., Ad- vances in direct oxidation methanol fuel cells. Journal of Power Sources, 1994. 47(3): p. 377. 2. C.Y. Chen and P. Yang, Performance of an air-breathing direct methanol fuel cell. Journal of Power Sources, 2003. 123(1): p. 37. 3. A. Simoglou, Argyropoulos, P., Martin, E. B., Scott, K., Morris, A. J. and Taama, W. M., Dynamic modelling of the voltage response of di- rect methanol fuel cells and stacks Part I: Model development and validation. Chemical Engineering Science, 2001. 56(23): p. 6761. 4. S.C. Kelly, G.A. Deluga and W.H. Smyrl, A Miniature Methanol/Air Polymer Electrolyte Fuel Cell. Electrochem. Solid-State Lett., 2000. 3: p. 407. 5. A. Blum, T. Duvdevani, M. Philosoph, N. Rudoy, and E. Peled, Wa- ter-neutral micro direct-methanol fuel cell (DMFC) for portable ap- plications. Journal of Power Sources, 2003. 117(1-2): p. 22. 6. T. Yamaguchi, H. Kuroki, and F. Miyata, DMFC performances using a pore-filling polymer electrolyte membrane for portable usages. Electrochemistry Communications, 2005. 7(7): p. 730. 7. W.Y. Hsu, J.R. Barkley, and P. Meakin, Ion Percolation and Insula- tor-to-Conductor Transition in Nafion Perfluorosulfonic Acid Mem- branes. Macromolecules, 1980. 13(1): p. 198-200. 34

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