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Synchrotron X-ray Diffraction Monitoring of the Operation of an Inert Anode Utilised in a Cambridge FFC-Cell

机译:同步X射线衍射监测在剑桥FFC-CELL中使用的惰性阳极的操作

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In this work, we have used synchrotron X-ray diffraction phase-mapping combined with electrochemistry to examine the operation of an inert anode in a Cambridge-FFC type laboratory cell. Inert anodes usually function via interaction of the anode with the electrolyte (CaCl_2) and the anode product (O_2). Upon immersion of an anode in the bath, there is dynamic formation of an insulating oxide film at the anode surface. Such films must be thin enough to allow electronic conduction, but thick enough to protect the surface from further reaction. Utilising an in-situ energy dispersive X-ray diffraction technique on a custom-built furnace for synchrotron measurements incorporating the FFC-type cell, the group is able to monitor the evolution of such films on the anode and elucidate the eventual failure mechanism of this anode.
机译:在这项工作中,我们使用了同步X射线衍射相位映射与电化学结合,以检查剑桥-FFC型实验室单元中惰性阳极的操作。惰性阳极通常通过阳极与电解质(CaCl_2)和阳极产品(O_2)的相互作用来起作用。在浴中浸入阳极时,在阳极表面处存在动态形成绝缘氧化物膜。这种薄膜必须足够薄,以允许电子传导,但足够厚以保护表面免受进一步反应的影响。利用原位能量分散X射线衍射技术在定制型炉上用于结合FFC型电池的同步型测量,该组能够监测在阳极上的这种薄膜的演变,并阐明该薄膜的进化并阐明该薄膜的进展情况阳极。

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