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Atomic Force Microscopy on Cross Sections of Fuel Cell Membranes, Electrodes, and Membrane Electrode Assemblies

机译:燃料电池膜,电极和膜电极组件的横截面上的原子力显微镜

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摘要

Using material-sensitive and conductive atomic force microscopy (AFM) on cross sections of perfluorinated and sulfonated membranes at low humidity, crystalline polymer lamellae were imaged and their thickness determined to approximately 6 nm. In the capacitive current, water-rich and waterpoor areas with different phase structures were investigated. The formation of a local electrochemical double layer within the water-rich ionically conductive areas at the contact of the AFM tip with the electrolyte enabled their visibility. The large water-filled ionically conductive areas include numerous ionic domains. Under equilibrium conditions, these areas are spherical (appearing circular in the images) and with distinct size distribution. Forcing a current through the membranes (current-inducedudactivation) led to merging of the water-filled ionically conductive areas in the voltage direction and resulted in an anisotropic ionically conducting network with flat channels. The distribution of the current in the membrane and catalytic layers of a pristine membrane electrode assembly (MEA) was analyzed. From the adhesion force mappings, an inhomogeneous distribution of ionomer in the catalytic layer wasuddetected. Cross currents between Pt/C particles through large ionomer particles within the catalytic layer were detected and the ionomer content across an electrode was evaluated.
机译:在低湿度下使用材料敏感和导电原子力显微镜(AFM)在溢流的全氟化和磺化膜的横截面上,成像结晶聚合物薄片,其厚度确定为约6nm。在电容电流中,研究了具有不同相结构的富含水和水袋区域。在AFM尖端的致致AFM尖端与电解质的触点处形成局部电化学双层的形成,使其能够使其能见度能够。大的充水离子导电区域包括许多离子结构域。在平衡条件下,这些区域是球形的(在图像中出现圆形),并且具有明显的尺寸分布。迫使电流通过膜(电流诱导的 Udactivation)导致在电压方向上合并水填充的离子导电区域,并导致具有平坦通道的各向异性离子导电网络。分析了膜和原始膜电极组件(MEA)的膜和催化层中的电流分布。从粘合力映射,催化层中的离聚物的不均匀分布是UDDETTET。检测到通过催化层内的大离聚物颗粒的Pt / C颗粒之间的交叉电流,并评价电极上的离聚物含量。

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