首页> 外文期刊>Journal of power sources >Localised electrochemical impedance measurements of a polymer electrolyte fuel cell using a reference electrode array to give cathode-specific measurements and examine membrane hydration dynamics
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Localised electrochemical impedance measurements of a polymer electrolyte fuel cell using a reference electrode array to give cathode-specific measurements and examine membrane hydration dynamics

机译:使用参比电极阵列对聚合物电解质燃料电池进行局部电化学阻抗测量,以提供特定于阴极的测量结果并检查膜水化动力学

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Advances in bespoke diagnostic techniques for polymer electrolyte fuel cells continue to provide unique insight into the internal operation of these devices and lead to improved performance and durability. Localised measurements of current density have proven to be extremely useful in designing better fuel cells and identifying optimal operating strategies, with electrochemical impedance spectroscopy (EIS) now routinely used to deconvolute the various losses in fuel cells. Combining the two techniques provides another dimension of understanding, but until now each localised EIS has been based on 2-electrode measurements, composed of both the anode and cathode responses. This work shows that a reference electrode array can be used to give individual electrode-specific EIS responses, in this case the cathode is focused on to demonstrate the approach.& para;& para;In addition, membrane hydration dynamics are studied under current load steps from open circuit voltage. A three-stage process is identified associated with an initial rapid reduction in membrane resistance after 10 s of applying a current step, followed by a slower ramp to approximately steady state, which was achieved after similar to 250 s. These results support previously published work that has looked at membrane swelling dynamics and reveal that membrane hydration/membrane resistance is highly heterogeneous.
机译:聚合物电解质燃料电池的定制诊断技术的进步继续为这些设备的内部操作提供了独特的见识,并提高了性能和耐用性。电流密度的局部测量已被证明在设计更好的燃料电池和确定最佳运行策略方面极为有用,现在常规使用电化学阻抗谱(EIS)来消除燃料电池中的各种损失。两种技术的结合提供了另一种理解的方式,但是直到现在,每个局部EIS都基于两电极测量,该测量由阳极和阴极响应组成。这项工作表明参考电极阵列可用于给出各个电极特定的EIS响应,在这种情况下,重点放在阴极上以证明该方法。此外,还研究了在当前负载下的膜水化动力学从开路电压开始的步进。确定了一个三阶段过程,该过程与施加电流阶跃10 s后膜电阻初始快速降低有关,然后缓慢下降至近似稳定状态,这在约250 s后即可实现。这些结果支持了以前发表的研究膜溶胀动力学的工作,并揭示了膜水合/膜抗性是高度异质的。

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