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Measurement of Contact Angles at Carbon Fiber-Water-Air Triple-Phase Boundaries Inside Gas Diffusion Layers Using X-ray Computed Tomography

机译:使用X射线计算机断层扫描测量气体扩散层内的碳纤维 - 水 - 空气三相界面的接触角

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Gas diffusion layers (GDLs) are porous carbonaceous layers that are widely used in energy conversion and storage devices. Simulation of water transport through GDLs, in a polymer electrolyte fuel cell (PEFC), for example, typically uses goniometer-measured external contact angles. Until now, there is no well-developed method to obtain contact angles inside the GDLs. AlRatrout et al. developed an open-source code to compute local contact angles at triple-phase contact points from segmented micro-X-ray computed tomography (X-ray CT) images of porous rocks. We apply it, for the first time, to micro-X-ray CT images of water-filled commercial GDLs and compute local contact angles at internal GDL fiber-water-air triple-phase contact points. We obtain a state of mixed wettability (hydrophilic and hydrophobic) inside all GDL samples, with a broad range of contact angles, instead of one hydrophobic contact angle found from goniometer experiments. Lattice Boltzmann water transport simulations performed with these distributed contact angles produce results that are in better agreement with experimental data. We also obtain high-resolution X-ray photoelectron spectroscopy (XPS) data of the GDL samples and find that the concentration of oxide species correlates strongly with the measured hydrophilicity. The method introduced here can help rationally design GDLs and directly quantify their internal surface wettability that is needed for accurate predictions of their functionality in energy technology devices.
机译:气体扩散层(GDL)是广泛应用于能量转换和存储设备的多孔碳质层。例如,在聚合物电解质燃料电池(PEFC)中,水通过GDLs传输的模拟通常使用测角仪测量的外部接触角。到目前为止,还没有成熟的方法来获取GDL内部的接触角。AlRatrout等人开发了一个开源代码,用于从多孔岩石的分段微X射线计算机断层扫描(X射线CT)图像计算三相接触点的局部接触角。我们首次将其应用于充满水的商用GDL的微X射线CT图像,并计算了GDL纤维-水-空气三相接触点内部的局部接触角。我们在所有GDL样品中获得了混合润湿性(亲水性和疏水性)的状态,具有广泛的接触角,而不是测角仪实验中发现的一个疏水性接触角。使用这些分布接触角进行的晶格玻尔兹曼水传输模拟产生的结果与实验数据更为一致。我们还获得了GDL样品的高分辨率X射线光电子能谱(XPS)数据,发现氧化物物种的浓度与测量的亲水性密切相关。本文介绍的方法有助于合理设计GDL,并直接量化其内表面润湿性,这是准确预测其在能源技术设备中功能所需的。

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