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An Original Laboratory X-ray Diffraction Method For In Situ Investigations On The Water Dynamics In A Fuel Cell Proton Exchange Membrane

机译:用于燃料电池质子交换膜水动力学原位研究的原始实验室X射线衍射方法

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摘要

A key issue of the polymer membrane-based fuel cells is the water management, since the polymeric electrolyte acts as a good protonic conductor only if sufficiently hydrated. Although models and theoretical studies are widely reported in the literature, experimental investigations are much less available, due to inherent difficulties to sample the membrane in situ. Among the techniques utilized for this purpose, the synchrotron radiation X-ray diffraction has been demonstrated to be a suitable tool to observe the real-time water dynamics in the polymeric membranes. To export this method in laboratories would represent a big advantage because of the limited access to synchrotron facilities. Clearly, the main problem in performing such studies by using conventional X-ray tubes consists of their much lower photon flux, particularly relevant when non-crystalline samples, as polymers, are to be investigated and when extreme collimations of the X-ray beams are required, as in the case of thin membranes. In the present work, we propose a X-ray method, based on the energy dispersive X-ray diffraction, capable to overcome these drawbacks.
机译:聚合物膜基燃料电池的关键问题是水管理,因为聚合物电解质只有在充分水合的情况下才能充当良好的质子导体。尽管在文献中广泛报道了模型和理论研究,但是由于固有的就地采样膜的固有困难,实验研究却很少。在用于此目的的技术中,已证明同步辐射X射线衍射是观察聚合物膜中实时水动力学的合适工具。由于对同步加速器设备的访问有限,因此在实验室中导出此方法将具有很大的优势。显然,通过使用常规X射线管进行此类研究的主要问题在于它们的光子通量低得多,特别是在要研究非晶体样品作为聚合物以及要对X射线束进行极端准直时,这一点尤其重要。薄膜一样。在当前的工作中,我们提出一种基于能量色散X射线衍射的X射线方法,该方法能够克服这些缺点。

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