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Composites Nafion-titania membranes for Polymer Electrolyte Fuel Cell (PEFC) applications at low relative humidity levels: Chemical physical properties and electrochemical performance

机译:用于低相对湿度水平的聚合物电解质燃料电池(PEFC)应用的复合Nafion-二氧化钛膜:化学物理性质和电化学性能

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The incorporation of inorganic compounds into the polymeric Nafion matrix represents a possible solution to improve the mechanical characteristics of the polymeric membranes when drastic operative conditions (higher temperatures and/or lower relative humidity levels) are adopted in a Polymer Electrolyte Fuel Cell (PEFC). On the basis of previous investigations, different commercial anatase titanium oxide (TiO2) loadings were used to prepare composite membranes with the aim of reducing the humidification levels for a PEFC stack. Membranes with three different TiO2 contents (5, 10, 15 wt.%) were cast and characterized in terms of chemical-physical and electrochemical behaviour. The influence of filler was highlighted resulting in a swelling reduction of the composite membranes if compared to a pristine recast Nafion membrane cast with the same method and used as a reference. A good proton conductivity was observed for all composite Nafion.-titania (N-TiO2) membranes with values ranging 13-1.9.10(-2) S cm(-1) at 60 degrees C and 50%RH against a value of 1.5.10(-2) S cm(-1) related to the reference membrane. The composite membrane containing a 10 wt.% of TiO2 has shown an improved performance respect to the reference membrane, especially at low levels of humidification and a higher stability during the accelerated stress test (AST) carried out in drastic conditions (60 degrees C and 50%RH), probably due to the filler capability to reduce the swelling and give stiffness to the polymeric matrix. (C) 2016 Elsevier Ltd. All rights reserved.
机译:当在聚合物电解质燃料电池(PEFC)中采用剧烈的操作条件(较高的温度和/或较低的相对湿度水平)时,将无机化合物掺入聚合物Nafion基质中是改善聚合物膜机械性能的一种可能的解决方案。在以前的研究的基础上,使用不同的工业锐钛矿型二氧化钛(TiO2)负载量来制备复合膜,目的是降低PEFC堆的加湿水平。浇铸具有三种不同TiO2含量(5、10、15 wt。%)的膜,并根据化学,物理和电化学行为对其进行表征。如果与使用相同方法铸造的原始重铸的Nafion膜相比,填料的影响得到突出,从而导致复合膜的溶胀降低,并用作参考。在60°C和50%RH的条件下,所有复合Nafion.-titania(N-TiO2)膜的质子传导率均在13-1.9.10(-2)S cm(-1)范围内,而值1.5与参考膜有关的.10(-2)S cm(-1)。相对于参比膜,包含10 wt。%TiO2的复合膜表现出改进的性能,尤其是在低湿度下,在剧烈条件(60摄氏度和60摄氏度)下进行的加速应力测试(AST)期间,稳定性更高。 50%RH),可能是由于填料具有减少溶胀并赋予聚合物基质硬度的能力。 (C)2016 Elsevier Ltd.保留所有权利。

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