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Solvent Induced Fabrication of Solid Polymer Electrolyte Water Electrolyzer: A study in Sulfonated Poly(Ether Ether Ketone) Based Membrane Electrode Assembly

机译:溶剂诱导的固体聚合物电解质水电解槽的制备:基于磺化聚醚醚酮的膜电极组件的研究

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摘要

A novel solvent induced fabrication technique is developed for the preparation of the sulfonated poly (ether ether ketone) (sPEEK) based water electrolysis membrane electrode assembly (MEA). The solvent, dimethyl formamide (DMF), instead of the high pressure and temperature, is used to induce the softening of the membrane and better integration of the MEA with excellent interface compatibility. The influence of hot pressing period, the amount of polymer used in the electrode, and the temperature are investigated to optimize the performance of the MEA. The single cell performance for the water electrolysis is evaluated to optimize the fabrication parameters. It is found out that all three factors have great influences on the final cell performance and the tradeoff effects are observed due to the various states of the catalyst efficiency, TPBs, the conductivity, and cell resistance. As a result, the cell performance is optimized with the MEA fabricated at 120 degrees C, using the catalysts to polymer weight ratio of 5: 1 and a 60s hot pressing period.
机译:为制备基于磺化聚醚醚酮(sPEEK)的水电解膜电极组件(MEA),开发了一种新颖的溶剂诱导制造技术。使用溶剂二甲基甲酰胺(DMF)代替高压和高温来诱导膜的软化和MEA的更好集成,并具有出色的界面相容性。研究了热压时间,电极中聚合物的用量和温度的影响,以优化MEA的性能。评估水电解的单电池性能以优化制造参数。发现所有三个因素对最终电池的性能有很大的影响,并且由于催化剂效率,TPB,电导率和电池电阻的各种状态而观察到折衷效果。结果,使用催化剂与聚合物的重量比为5:1和60s的热压周期,在120摄氏度下制造的MEA可优化电池性能。

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