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The Fabrication and Use of Bipolar Membrane in Hybrid PEM/AEM Fuel Cells

机译:杂交PEM / AEM燃料电池中双极膜的制备和使用

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Bipolar membranes fuel cells utilizing both anion and cation conductive materials have several advantages compared to their purely acidic or alkaline counterparts. The potential advantages include improved water management through self-hydration and facile electrode kinetics. Material transport properties play an important role in determining viability of membrane and ionomer materials. In addition, the cation-anion junction itself is a critical element in determining device performance because it must be sufficiently conductive to ionic species and mechanically stable to withstand the internal pressure from water formation. A series of electrochemical devices using different bipolar membranes have been fabricated for use in direct methanol and hydrogen fuel cells. This study examines both singleand two-membrane systems containing cation-anion junctions. These fuel cells were characterized by performance metrics and electrochemical impedance spectroscopy to determine specific areas for improvement in the bipolar devices. Operation under varying humidity was studied in order to understand water management necessary for bipolar fuel cells. These results will be used in the future optimization of bipolar devices.
机译:与纯酸性或碱性对应物相比,双极膜利用阴离子和阳离子导电材料的燃料电池具有若干优点。潜在的优势包括通过自水合作用和容易电极动力学改善水管理。材料传输特性在确定膜和离聚物材料的活力方面发挥着重要作用。另外,阳离子Anion结自身是确定器件性能的关键元件,因为它必须足够地导致离子物质并机械稳定以承受来自水形成的内部压力。使用不同双极膜的一系列电化学装置已经制造用于直接甲醇和氢燃料电池。本研究审查了含有阳离子连接线的单百合二膜系统。这些燃料电池的特征在于性能度量和电化学阻抗光谱,以确定双极器件改善的特定区域。研究了不同湿度下的操作,以了解双相燃料电池所需的水管理。这些结果将在双极设备的未来优化中使用。

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