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Design and Development of Copper Trimesic Acid Anchored sPEEK/Polyimide Composite Membranes for Fuel Cell Applications

机译:Design and Development of Copper Trimesic Acid Anchored sPEEK/Polyimide Composite Membranes for Fuel Cell Applications

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Electrolyte membranes play a critical role as their properties directly influences the performance of fuel cell. A copper-based metal organic framework (MOF) anchored polymeric blend membrane was developed for fuel cell application. Cu-MOF serves as an excellent filler material due to its small size, high degree of crystallinity and surface area. Through XRD analysis well defined crystallite sites was evidenced and the average crystallite size measured ~ 0.3 A. The acidic functional group in MOF interacts with sulfonic acid (SO3H) group in sulfonated polyetheretherketone (sPEEK) matrix which further improves proton conduction via. hydrogen bonding interaction. With the as-prepared sPEEK as the matrix; polyimide (PI) was blended to improve its processibility and thermal stability. Cu-MOF loaded composite membranes (X wt.% Cu-MOF-sPEEK/PI) were prepared and characterized. To assess the suitability of the developed membranes for proton exchange membrane fuel cell (PEMFC) applications, ion exchange capacity (IEC), water uptake and proton conductivity was measured. 3 wt.% Cu-MOF-2-sPEEK/PI membrane displayed an IEC value of 2.35 meq g~(-1) with a water uptake of 38.18% and proton conductivity of 0.0711 S cm~(-1). Overall, the experimental results of the prepared membranes revealed that they act as an efficient proton exchange membrane (PEM) for PEMFCs.
机译:电解质膜起着至关重要的作用直接影响了它们的属性燃料电池的性能。有机框架(MOF)固定聚合物混合膜燃料电池应用程序开发。Cu-MOF作为一个优秀的填充材料它的体积小,结晶度高和表面积。微晶网站证明,定义平均晶粒度测量~ 0.3。在财政部与酸性官能团磺酸磺化(SO3H)进一步polyetheretherketone(斑点)矩阵提高质子传导通过。交互。矩阵;可加工性和热稳定性。加载复合膜(X wt. %Cu-MOF-sPEEK / PI)是准备和特征。评估开发的适宜性质子交换膜燃料电池的膜(质子交换膜燃料电池)应用程序、离子交换容量(IEC)、水吸收和质子电导率测量。显示一个IEC值2.35毫克当量g ~ (1)水吸收的38.18%和质子电导率0.0711厘米~(- 1)。准备膜显示的结果他们作为一种有效的质子交换膜

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