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In-situ Measurement of Oxygen Partial Pressure in the Cathode Flow Field with a Hydrophilic Surface

机译:用亲水表面在阴极流场中的氧分压的原位测量

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Cathode oxygen concentration is vital for the performance of proton exchange membrane fuel cells (PEMFC). A novel method to directly detect oxygen partial pressure in the cathode flow-field has been developed utilizing fluorophore molecules which are sensitive to oxygen quenching. A platinum porphyrin based fluorophore is used with a polymer binder to form the fluorophore layer that is exposed to the cathode gas flow field in the visualization cell. In this study, poly-heptafluoro-n-butly, methacrylate-co-hexafluroisopropyl, and methacrylate (FIB polymer) were used as the binder to obtain a proper range of quenching rate. Thus, the intensity of fluorescent luminescence of this fluorophore layer covers 7 kPa to 53 kPa oxygen partial pressure concentration. Also, this material composition exhibits acceptable temperature sensitivity between 40 to 90 degrees C. The polymer binder modification described in this report enabled accurate in-situ oxygen partial pressure measurements to cover typical operating conditions of an automotive PEMFC.
机译:阴极氧浓度对于质子交换膜燃料电池(PEMFC)的性能至关重要。利用对氧气淬火敏感的荧光团分子,开发了一种直接检测阴极流场中氧分压的新方法。基于铂卟啉基荧光团与聚合物粘合剂一起使用,以形成暴露于可视化细胞中的阴极气体流场的荧光团层。在该研究中,使用聚庚二氟-N-苯甲酰基和甲基丙烯酸酯 - 共六氟丙基和甲基丙烯酸酯(FIB聚合物)作为粘合剂,得到适当的猝灭速率范围。因此,该荧光团层的荧光发光强度覆盖7kPa至53kPa氧分压浓度。此外,该材料组合物在40至90℃之间表现出可接受的温度敏感性。本报告中描述的聚合物粘合剂改性使得能够精确原位氧气部分压力测量以覆盖汽车PEMFC的典型操作条件。

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