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Composite Gel Polymer Electrolytes Based on Organo-Modified Nanoclays: Investigation on Lithium-Ion Transport and Mechanical Properties

机译:基于有机改性纳米粘土的复合凝胶聚合物电解质:锂离子传输和力学性能的研究

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摘要

Composite gel polymer electrolytes (GPEs) based on organo-modified montmorillonite clays have been prepared and investigated. The organo-clay was prepared by intercalation of CTAB molecules in the interlamellar space of sodium smectite clay (SWy) through a cation-exchange reaction. This was used as nanoadditive in polyacrylonitrile/polyethylene-oxide blend polymer, lithium trifluoromethanesulphonate (LiTr) as salt and a mixture of ethylene carbonate/propylene carbonate as plasticizer. GPEs were widely characterized by DSC, SEM, and DMA, while the ion transport properties were investigated by AC impedance spectroscopy and multinuclear NMR spectroscopy. In particular, 7Li and 19F self-diffusion coefficients were measured by the pulse field gradient (PFG) method, and the spin-lattice relaxation times (T1) by the inversion recovery sequence. A complete description of the ions dynamics in so complex systems was achieved, as well as the ion transport number and ionicity index were estimated, proving that the smectite clay surfaces are able to “solvatate” both lithium and triflate ions and to create a preferential pathway for ion conduction.
机译:已经制备并研究了基于有机改性的蒙脱石粘土的复合凝胶聚合物电解质(GPE)。通过阳离子交换反应将CTAB分子嵌入蒙脱石钠粘土(SWy)的层间空间中来制备有机粘土。它被用作聚丙烯腈/聚环氧乙烷共混聚合物中的纳米添加剂,三氟甲磺酸锂(LiTr)为盐,碳酸亚乙酯/碳酸亚丙酯的混合物为增塑剂。 GPE通过DSC,SEM和DMA进行了广泛表征,而离子迁移特性则通过AC阻抗谱和多核NMR谱进行了研究。特别是,通过脉冲场梯度(PFG)方法测量了 7 Li和 19 F自扩散系数,并通过了自旋晶格弛豫时间(T1)。反转恢复序列。获得了对如此复杂系统中离子动力学的完整描述,并估算了离子迁移数和离子性指数,从而证明绿土粘土表面能够“溶解”锂离子和三氟甲磺酸根离子并形成一条优先途径。用于离子传导。

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