Importance of Proton Conductivity Measurement in Polymer Electrolyte Membrane for Fuel Cell Application

奈奎斯特图 Nafion公司 电导率 电解质 分析化学(期刊) 质子交换膜燃料电池 相对湿度 电极 材料科学 电阻抗 质子 湿度 化学 水蒸气 电阻率和电导率 电化学 介电谱 热力学 色谱法 电气工程 工程类 物理 物理化学 有机化学 生物化学 量子力学
作者
Young Moo Lee,Ho Bum Park,Young Moo Lee,Rae Duk Lee
出处
期刊:Industrial & Engineering Chemistry Research [American Chemical Society]
卷期号:44 (20): 7617-7626 被引量:234
标识
DOI:10.1021/ie0501172
摘要

The precise impedance measurement system based on the well-known two-probe and four-probe methods was prepared to measure the impedance and consequent proton conductivity of Nafion membranes as standard samples, considering not only the number of electrodes and the bridging methods but also the elimination of electrical error sources for the precise electrical analysis. The proton conductivities of Nafion membranes are reported and discussed in the present study with respect to different cell configurations and measurement conditions. The values of proton conductivities measured using the four-probe method were always higher (2−5 times) than those measured using the two-probe method at ambient humidity and temperature. The proton conductivities were also measured under two different humidity conditions: water-vapor state and liquid-water state. In the water-vapor state (95% relative humidity), completely different impedance behaviors for the identical Nafion membrane were observed from the Nyquist impedance plots. All Nyquist plots derived from the two-probe method represented the inductive reactance derived from various components, such as Pt electrodes, electric conductive leads, and a potentiometer in the path of current flow rather than the capacitive reactance between Pt electrodes. The effect of contact resistance between the membrane sample and electrodes on proton conductivity was also investigated by using the two conductivity-cell configurations. It was shown that the effect of the contact resistance on the proton conductivity was more severe in the two-probe measurement, and this factor should be seriously considered in the water-vapor state. Furthermore, the humidity and the temperature effects on the proton conductivity of the membranes were observed under various measuring conditions and compared with the two different cell configurations. The four-probe method well reflected the proton conductivity behavior of Nafion membrane in the wide range of temperature and humidity, as compared with the two-probe method with reasonable proton conductivity in the low humidity.
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