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Membrane Electrode Assembly Modification by Zeolite and Graphene Oxide

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Membrane Electrode Assembly Modification by Zeolite and Graphene Oxide ( membrane-electrode-assembly-modification-by-zeolite-and-grap )

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References 74. Jiao, J., Wang, W., Sulikowski, B., Weitkamp, J. and Hunger, M., 29 Si and 27 Al MAS NMR characterization of non-hydrated zeolites Y upon adsorption of ammonia. Microporous and Mesoporous Materials, 2006. 90(1): p. 246-250. 75. Lu, J., Zhao, Z., Xu, C., Duan, A. and Zhang, P., Effects of calcination temperature on the acidity and catalytic performances of HZSM-5 zeolite catalysts for the catalytic cracking of n-Butane. Journal of Natural Gas Chemistry, 2005. 14(4): p. 213. 76. Wakui, K., Satoh, K., Sawada, G., Shiozawa, K., Matano, K., Suzuki, K., Hayakawa, T., Yoshimura, Y., Murata, K. and Mizukami, F., Dehydrogenative cracking of n-butane using double-stage reaction. Applied Catalysis A: General, 2002. 230(1): p. 195-202. 77. He, J., Yang, X., Evans, D.G. and Duan, X., New methods to remove organic templates from porous materials. Materials chemistry and physics, 2003. 77(1): p. 270-275. 78. Corma, A., Fornes, V., Navarro, M.T. and Perezpariente, J., Acidity and stability of MCM-41 crystalline aluminosilicates. Journal of catalysis, 1994. 148(2): p. 569-574. 79. Mohammadi, T. and A. Pak, Effect of calcination temperature of kaolin as a support for zeolite membranes. Separation and Purification Technology, 2003. 30(3): p. 241-249. 80. Newell, P.A. and L.V. Rees, Ion-exchange and cation site locations in zeolite L. Zeolites, 1983. 3(1): p. 22-27. 81. Yashima, T., Y. Sakaguchi, and S. Namba, Selective formation of p-xylene by alkylation of toluene with methanol on ZSM-5 type zeolites. Studies in surface science and catalysis, 1981. 7: p. 739-751. 82. Kaeding, W., Chu, C., Young, L.B., Weinstein, B. and Butter, S.A., Selective alkylation of toluene with methanol to produce para-xylene. Journal of catalysis, 1981. 67(1): p. 159-174. 83. Haggerty, G.M. and R.S. Bowman, Sorption of chromate and other inorganic anions by organo-zeolite. Environmental Science & Technology, 1994. 28(3): p. 452-458. 84. Barrer, R., E. Vansant, and G. Peeters, Sorption behaviour of silanated H- mordenite. Journal of the Chemical Society, Faraday Transactions 1: Physical Chemistry in Condensed Phases, 1978. 74: p. 1871-1878. 85. Thijs, A., Peeters, G., Vansant, E.F., Verhaert, I. and De Bièvre, P., Encapsulation of gases in h-mordenite modified with silane and diborane. Journal of the Chemical Society, Faraday Transactions 1: Physical Chemistry in Condensed Phases, 1983. 79(12): p. 2835-2842. 86. Yi, T., L. Lu, and G. Zi, Studies on the Control of the Pore-opening Size of HM Zeolite and its Para-selectivity [J]. Acta Physico-chimica Sinica, 1994. 6: p. 006. 87. Zaharri, N., N. Othman, and Z. Ishak, Effect of Zeolite Modification via Cationic Exchange Method on Mechanical, Thermal, and Morphological Properties of Ethylene Vinyl Acetate/Zeolite Composites. Advances in Materials Science and Engineering, 2013. 2013. 88. de Juan, F. and E. Ruiz‐Hitzky, Selective functionalization of mesoporous silica. Advanced Materials, 2000. 12(6): p. 430-432. 89. Castricum, H.L., Mittelmeijer-Hazeleger, M.C., Sah, A. and Johan, E., Increasing the hydrothermal stability of mesoporous SiO 2 with Sirhan AL-Batty Page 190

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