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首页> 外文期刊>ACS Macro Letters >Synthesis of Polymer Electrolytes Based on Poly(ethylene oxide) and an Anion-Stabilizing Hard Polymer for Enhancing Conductivity and Cation Transport
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Synthesis of Polymer Electrolytes Based on Poly(ethylene oxide) and an Anion-Stabilizing Hard Polymer for Enhancing Conductivity and Cation Transport

机译:基于聚环氧乙烷和稳定阴离子的硬质聚合物以提高电导率和阳离子迁移的聚合物电解质的合成

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摘要

We have investigated a new methodology for improving the ionic conductivity and cation transport of polymer electrolytes by incorporating an anion-stabilizing hard polymer. A lamellar-forming poly(ethylene oxide-b-dithioox-amide) (PEO-b-PDTOA) block copolymer having enhanced ion conduction and mechanical strength, arising from PEO and PDTOA, respectively, was synthesized. Compared to a simple PEO/PDTOA blend, lithium salt-doped PEO-b-PDTOA exhibited significantly enhanced ionic conductivity, which is ascribed to efficient ion transport along the nanoscale PEO domains. Strikingly, by applying a dc polarization voltage, the inclusion of PDTOA afforded a high ratio of the steady state to the initial current flow of 0.67 for the PEO-b-PDTOA electrolytes, surpassing the value of 0.31 observed for conventional PEO-salt electrolytes. A key reason for achieving enhanced cation transport was the hydrogen bonding interactions between the thioamide moieties of PDTOA and the anions of lithium salts. This work provides fascinating experimental insights into the enhancement of cation transport of polymer electrolytes without chemically bonded negative charges and has implications for fast charging energy storage systems.
机译:我们已经研究了通过结合阴离子稳定的硬质聚合物来改善聚合物电解质的离子电导率和阳离子传输的新方法。合成了分别由PEO和PDTOA引起的具有增强的离子传导性和机械强度的层状形成聚(环氧乙烷-b-二硫代酰胺)(PEO-b-PDTOA)嵌段共聚物。与简单的PEO / PDTOA共混物相比,掺杂锂盐的PEO-b-PDTOA表现出显着增强的离子电导率,这归因于沿纳米级PEO域的有效离子传输。引人注目的是,通过施加直流极化电压,PDTOA的加入使PEO-b-PDTOA电解质的稳态与初始电流之比高至0.67,超过了传统PEO-盐电解质的0.31。实现增强的阳离子传输的关键原因是PDTOA的硫酰胺部分与锂盐阴离子之间的氢键相互作用。这项工作为增强无化学键合负电荷的聚合物电解质的阳离子传输提供了有趣的实验见解,并为快速充电储能系统带来了影响。

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