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Mechanism of action of polytetrafluoroethylene binder on the performance and durability of high-temperature polymer electrolyte fuel cells

机译:聚四氟乙烯粘合剂对高温聚合物电解质燃料电池性能和耐久性的作用机理

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摘要

In this work, new insights into impacts of the polytetrafluoroethylene (PTFE) binder on high temperature polymer electrolyte fuel cells (HT-PEFCs) are provided by means of various characterizations and accelerated stress tests. Cathodes with PTFE contents from 0 wt% to 60 wt% were fabricated and compared using electrochemical measurements. The results indicate that the cell with 10 wt% PTFE in the cathode catalyst layer (CCL) shows the best performance due to having the lowest mass transport resistance and cathode protonic resistance. Moreover, cyclic voltammograms show that Pt (100) edge and corner sites are significantly covered by PTFE and phosphate anions when the PTFE content is higher than 25 wt%. Open-circuit and low load-cycling conditions are applied to accelerate degradation processes of the HT-PEFCs. The PTFE binder shows a network structure in the pores of the catalyst layer, which reduces phosphoric acid leaching during the aging tests. In addition, the high binder HT-PEFCs more easily suffer from a mass transport problem, leading to more severe performance degradation. (C) 2021 The Author(s). Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:在这项工作中,通过各种特征和加速应力测试,提供了新的新洞察聚四氟乙烯(PTFE)粘合剂对高温聚合物电解质燃料电池(HT-PEFC)的影响。制造具有PTFE含量的PTFE含量至60wt%的阴极,并使用电化学测量进行比较。结果表明,阴极催化剂层(CCL)中具有10wt%PTFE的电池显示出由于具有最低质量传输电阻和阴极质子抗性而导致的最佳性能。此外,循环伏安图表明,当PTFE含量高于25wt%时,PT(100)边缘和角部位显着覆盖PTFE和磷酸根阴离子。施加开路和低负载循环条件以加速HT-PEFC的降解过程。 PTFE粘合剂显示催化剂层的孔中的网络结构,其在老化试验期间减少了磷酸浸出。此外,高粘合剂HT-PEFCs更容易患有大规模运输问题,导致更严重的性能下降。 (c)2021提交人。 elsevier有限公司发布代表氢能出版物LLC。

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