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Morphology control of sulfonated poly(ether ketone ketone) poly(ether imide) blends and their use in proton-exchange membranes

机译:磺化聚醚醚酮聚醚酰亚胺共混物的形态控制及其在质子交换膜中的应用

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摘要

Polymer blends based on sulfonated poly(ether ketone ketone) (SPEKK) as the proton-conducting component and poly(ether imide) (PEI) as the second component were considered for proton-exchange membranes (PEMs). The PEI was added to improve the mechanical stability and lower the water swelling in the fuel cell environment. Membranes were cast from solution using N-methyl-2-pyrrolidone (NMP) and dimethylacetamide (DMAc). The ternary, polymer/polymer/solvent, phase diagram was determined to provide guidance on how to control the morphology during solvent casting of blend membranes. For blends of SPEKK (ion-exchange capacity = 2 mequiv/g) with PEI as the minority component, the morphology consisted of dispersed particles of ~0.5-6 μm. Larger particles were achieved by increasing the PEI content and/or lowering the casting temperature. High-temperature annealing after solution casting did not affect the morphology of blend membranes, due to the low mobility and compatibility of the two polymers. The possible use of SPEKK/PEI blends in PEMs is discussed in terms of existing theories of ion transport in polymers.
机译:质子交换膜(PEMs)被认为是基于磺化聚醚醚酮(SPEKK)作为质子传导组分和聚醚酰亚胺(PEI)作为第二组分的聚合物共混物。添加PEI是为了提高机械稳定性并降低燃料电池环境中的水溶胀。使用N-甲基-2-吡咯烷酮(NMP)和二甲基乙酰胺(DMAc)从溶液中浇铸膜。确定了三元聚合物/聚合物/溶剂的相图,以提供有关如何在共混膜的溶剂浇铸过程中控制形态的指导。对于以PEI为少数成分的SPEKK(离子交换容量= 2 mequiv / g)的共混物,其形态由〜0.5-6μm的分散颗粒组成。通过增加PEI含量和/或降低浇铸温度可获得更大的颗粒。由于两种聚合物的低迁移率和相容性,溶液流延后的高温退火不影响共混膜的形态。根据聚合物中离子迁移的现有理论,讨论了SPEKK / PEI共混物在PEM中的可能用途。

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