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A novel proton conducting ionogel electrolyte based on poly(ionic liquids) and protic ionic liquid

机译:基于聚(离子液体)和质子离子液体的新型质子传导离子电解质

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As opposed to the traditional hydrogels and organogels, ionogels are a new class of gel family where the liquid phase, percolating through the solid phase, consists of an ionic liquid (IL). The properties inherent in the ionic liquids, including high ionic conductivity, low-volatility and wide electrochemical stability window, are imparted to the ionogels. In this work, a novel proton conducting ionogel polymer electrolyte (iGPE) based on a poly (ionic liquid) Poly(diallyldimethylammonium) bis(trifluoromethanesulfonyl)imide, ([PDADMA][TFSI]) and protic ionic liquid, N,N-diethylmethylammonium triflate ([DEMA][Tf]) is prepared. The influence of the protic ionic liquid content on the physical, electrochemical, and ion transport properties of the iGPE has been investigated by differential scanning calorimetry (DSC), electrochemical impedance spectroscopy (EIS), and multi-nuclear solid-state and pulse-field gradient nuclear magnetic resonance. Upon addition of 60 wt% protic IL, the conductivity of the iGPE can be enhanced to 5.8 mS/cm at 100 degrees C, which is signifiantly higher than that of Nafion at 120 degrees C (0.2 mS/cm). Solid-state and PFG NMR measurements show that although the incorporation of [PDADMA][TFSI] leads to decreased ion dynamics, it promotes proton dissociation, resulting in a lower activation energy for ion diffusion compared to the neat protic IL. Evidence of proton activity in the iGPEs was obtained by cyclic votammetry, making this material a promising candidate as a proton conducting membranes in fuel cell applications. (C) 2020 Elsevier Ltd. All rights reserved.
机译:与传统的水凝胶和有机凝胶相反,IONOGELS是一种新的凝胶系列,其中液相通过固相渗透,由离子液体(IL)组成。离子液体中固有的性质,包括高离子导电性,低挥发性和宽的电化学稳定性窗口,赋予离子凝胶。在这项工作中,基于聚(离子液体)聚(二烯丙基磺酰基)酰亚胺(三氟甲磺酰基)酰亚胺(三氟甲磺酰基)和质子离子液体,N,N-二乙基甲基铵(N-二乙基甲基氨基)(N,二乙基甲基氨基)的新型质子传导离子凝胶聚合物电解质电解质电解质电解质(IGPE)制备Triflate([Dema] [TF])。在iGPE的物理,电化学,和离子传输性的质子型离子液体含量的影响已经通过差示扫描量热法(DSC),电化学阻抗谱(EIS)和多核固态和脉冲场调查梯度核磁共振。在加入60重量%的质子IL中,iGPE的电导率可在100度C,这比全氟磺酸的signifiantly更高,在120摄氏度(0.2毫秒/厘米)被增强以5.8毫秒/厘米。固态和PFG NMR测量表明,尽管掺入[PDADMA] [TFSI]导致离子动力学降低,但它促进质子解离,导致与整洁的质子IL相比离子扩散的较低激活能量。通过环状旋象获得IGPES中质子活性的证据,使得该材料使得该材料成为燃料电池应用中的质子导电膜的承诺候选者。 (c)2020 elestvier有限公司保留所有权利。

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