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Highly Conductive Anion Exchange Membrane for High Power Density Fuel-Cell Performance

机译:高电功率密度燃料电池性能的高导电阴离子交换膜

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Anion exchange membrane fuel cells (AEMECs) are regarded as a new generation of fuel cell technology that has the potential to overcome many obstacles of the mainstream proton exchange membrane fuel cells (PEMFCs) in cost, catalyst stability, efficiency, and system size. However, the low ionic conductivity and poor thermal stability of current anion exchange membranes (AEMs) have been the key factors limiting the performance of AEMFCs. In this study, an AEM made of styrenic diblock copolymer with a quaternary ammonium-functionalized hydrophilic block and a cross-linkable hydrophobic block and possessing bicontinuous phases of a hydrophobic network and hydrophilic conduction paths was found to have high ionic conductivity at 98 mS cm""1 and controlled membrane swelling with water uptake at 117 wt % at 22 °C. Membrane characterizations and fuel cell tests of the new AEM were carried out together with a commercial AEM, Tokuyama A201, for comparison. The high ionic conductivity and water permeability of the new membrane reported in this study is attributed to the reduced torturosity of the ionic conduction paths, while the hydrophobic network maintains the membrane mechanical integrity, preventing excessive water uptake.
机译:阴离子交换膜燃料电池(AEMEC)被认为是新一代燃料电池技术,具有促进主流质子交换膜燃料电池(PEMFC)的障碍,催化剂稳定性,效率和系统尺寸。然而,电流阴离子交换膜(AEMS)的低离子电导率和差的热稳定性是限制AEMFC性能的关键因素。在该研究中,发现一种与季铵官能化亲水嵌段和可交联疏水性嵌段和具有疏水网络的双连续阶段的苯乙烯二嵌段共聚物和具有亲水性传导路径的双连续阶段制成的AEM在98ms cm下具有高离子电导率“ “1和受控膜膨胀,在22℃下以117wt%在117wt%下溶胀。新AEM的膜特征和燃料电池测试与商业AEM,Tokuyama A201进行比较进行。本研究报告的新膜的高离子电导率和水渗透性归因于离子传导路径的折衷程度,而疏水网络保持膜机械完整性,防止过度吸水。

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