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A methanol concentration sensor using twin membrane electrode assemblies operated in pulsed mode for DMFC

机译:使用双膜电极组件以脉冲模式操作的DMFC甲醇浓度传感器

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摘要

A methanol concentration sensor based on twin Nafion membrane electrode assemblies (MEAs) was constructed and characterized by electrochemical methods. Pulsed amperometric detection (PAD) method, using a low frequency (67mHz) potential waveform of E_(red) (cathodic activation potential) = -0.2 V, E_(pre-oxd) (anodic pre-oxidation potential) = +0.60 V and E_(det) (detection potential) =+0.80 V versus DHE with the same pulse width of 5 s was applied to the sensor to enhance its performance. The response in pulsed mode had better linearity over a wider concentration range than that in potentiostatic mode. Furthermore, using this PAD method, the stability of the sensor was enhanced significantly with a slightly linear degradation rate of 2.9 mAh~(-1) during long-time test. The performances of the sensor in terms of linearity, low anodic saturation and high stability show its potential application for direct methanol fuel cells.
机译:构造了基于双Nafion膜电极组件(MEA)的甲醇浓度传感器,并通过电化学方法进行了表征。脉冲安培检测(PAD)方法,使用E_(红色)(阴极激活电位)= -0.2 V,E_(pre-oxd)(阳极预氧化电位)= +0.60 V的低频(67mHz)电位波形E_(det)(检测电势)= + 0.80 V vs. DHE,具有相同的5 s脉冲宽度,被应用于传感器以增强其性能。在较宽的浓度范围内,脉冲模式下的响应具有比恒电位模式下更好的线性。此外,使用这种PAD方法,在长时间测试过程中,传感器的稳定性得到了显着增强,线性降解率略有降低,为2.9 mAh〜(-1)。传感器在线性,低阳极饱和度和高稳定性方面的性能表明其在直接甲醇燃料电池中的潜在应用。

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