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Catalyst-Layer Ionomer Imaging of Fuel Cells

机译:燃料电池的催化剂层离聚物成像

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Investigation of membrane/electrode assembly (MEA) microstructure has become an essential step to optimize the MEA components and manufacturing processes or to study the MEA degradation. For these investigations, transmission electron microscopy (TEM) is a tool of choice as it provides direct imaging of the different components. TEM is then widely used for analyzing the catalyst nanoparticles and their carbon support. However, the ionomer inside the electrode is more difficult to be imaged. The difficulties come from the fact that the ionomer forms an ultrathin layer surrounding the carbon particles and in addition, these two components, having similar density, present no difference in contrast. In this work, we show how the recent progresses in TEM techniques as spherical aberration (Cs) corrected HRTEM, electron tomography and X-EDS elemental mapping provide new possibilities for imaging this ionomer network and consequently to study its degradation.
机译:膜/电极组件(MEA)微结构的研究已成为优化MEA组分和制造工艺的基本步骤或研究MEA降解。 对于这些研究,透射电子显微镜(TEM)是选择的选择工具,因为它提供了不同组件的直接成像。 然后广泛用于分析催化剂纳米颗粒及其碳载体的TEM。 然而,电极内部的离聚物更难以成像。 困难来自离子聚物形成围绕碳颗粒的超薄层,并且这两个组分具有相似的密度,对比度没有差异。 在这项工作中,我们展示了最近的TEM技术的进展如何作为球面像差(CS)校正的HRTEM,电子断层扫描和X-EDS元素映射为成像该离导网络的成像并因此提供了新的可能性。

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