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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Background 1.4 Outline Thesis Chapter 1: The environmental impact result from energy production and how it effect the environment by increasing the production of toxic gases such as CO2. This led to the demand of alternative energy. It also shows the aim of this work and how it can be attached by using the DMFC. In addition, a general introduction of fuel cell concept, fuel cell efficiency, types of fuel cell. Also explains the advantages and disadvantages and how to minimize methanol crossover in DMFC. Finally, explains in detail the background of DMFC, its limitation, and how these problems can be solved to achieve a better performance Chapter 2: Literature reviews of the inorganic materials which have been used in modifying the binding layer of the MEA. This includes the structure and the properties of zeolite and graphene oxide. Chapter 3: Explains the preparation methods of standard membrane electrode assemblies and the modification of the inorganic/organic binding layer. Moreover, it explains the characterization techniques used to evaluate the methanol crossover in DMFC. Chapter 4: Shows the results of varying the fuel cell temperature by using standard and modified binding layer in DMFC. Chapter 5: Shows the results of varying the anode feed concentration of the standard MEA’s, MEA when cooperated with mordenite, sulfonated mordenite, and graphene oxide. Chapter 6: Shows the results of the proton conductivity and the methanol crossover of standard MEA, mordenite modified MEA, sulfonated mordenite MEA, and graphene oxide MEA. Chapter 7: The conclusion of this work and the future work. Sirhan AL-Batty Page 24

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