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Synthesis and properties of bonding layer containing flexible and fluorinated moieties for hydrocarbon-based membrane electrode assemblies

机译:用于烃基膜电极组件的含柔性和氟化部分的粘结层的合成与性能

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For membrane electrode assemblies (MEAs) consisting of hydrocarbon proton exchange membranes (PEMs) and Nafion-coated catalysts, the interfacial incompatibility between the membrane and electrodes has been a constant issue because it can seriously deteriorate the performance and long term stability of the MEAs. In this study, new bonding materials based on sulfonated aromatic copolymers with flexible and partially fluorinated structures (SPE/F) were prepared and tested as a proton conductive bonding layer on the surface of the hydrocarbon PEMs to increase the adhesive force to the catalyst layer. The SPE/F copolymers were synthesized by polycondensation of sulfonated and non-sulfonated dihalide monomers with two dihydroxy monomers, 4,4'-dihydroxy diphenyl ether (DHDPE) and hexafluoro bisphenol A (HFB). The molar feed ratio of DHDPE to HFB was varied (10:0, 7:3, and 4:6) in order to evaluate the effect of the polymer structure on the physical, electrochemical, and adhesive properties. With an increase in the HFB ratio, the proton conductivity and dimensional change of the resulting polymers decreased due to the enhanced chain rigidity and lower ion exchange capacity. The maximum adhesive strength of the bonding layer was obtained using a DHDPE:HFB ratio of 7:3 (SPE/F-7/3). Finally, the MEA utilizing SPE/F-7/3 as the bonding layer exhibited higher performance in the initial unit cell test, as well as a reduced increase in resistance after the durability cycling test compared with pristine MEA without the bonding layer. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:对于由烃质子交换膜(PEM)和Nafion涂层的催化剂组成的膜电极组件(MEA),膜和电极之间的界面不相容性一直是一个长期问题,因为它会严重破坏MEA的性能和长期稳定性。在这项研究中,基于具有柔性和部分氟化结构的磺化芳族共聚物(SPE / F)的新型粘结材料被制备并作为烃PEM表面上的质子传导粘结层进行了测试,以增加对催化剂层的粘附力。 SPE / F共聚物是通过磺化和非磺化二卤化物单体与两个二羟基单体4,4'-二羟基二苯醚(DHDPE)和六氟双酚A(HFB)的缩合反应合成的。改变DHDPE与HFB的摩尔进料比(10:0、7:3和4:6),以评估聚合物结构对物理,电化学和粘合性能的影响。随着HFB比率的增加,由于增强的链刚性和较低的离子交换容量,所得聚合物的质子电导率和尺寸变化减小。使用7:3的DHDPE:HFB比(SPE / F-7 / 3)获得粘合层的最大粘合强度。最后,与没有粘合层的原始MEA相比,利用SPE / F-7 / 3作为粘合层的MEA在初始晶胞测试中表现出更高的性能,并且在耐久性循环测试后的电阻增加降低。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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