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The diffusion and conduction of lithium in poly(ethylene oxide)-based sulfonate ionomers

机译:锂在聚环氧乙烷基磺酸盐离聚物中的扩散和传导

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Pulsed field gradient nuclear magnetic resonance spectroscopy and dielectric relaxation spectroscopy have been utilized to investigate lithium dynamics within poly(ethylene oxide) (PEO)-based lithium sulfonate ionomers of varying ion content. The ion content is set by the fraction of sulfonated phthalates and the molecular weight of the PEO spacer, both of which can be varied independently. The molecular level dynamics of the ionomers are dominated by either Vogel-Fulcher-Tammann or Arrhenius behavior depending on ion content, spacer length, temperature, and degree of ionic aggregation. In these ionomers the main determinants of the self-diffusion of lithium and the observed conductivities are the ion content and ionic states of the lithium ion, which are profoundly affected by the interactions of the lithium ions with the ether oxygens of the polymer. Since many lithium ions move by segmental polymer motion in the ion pair state, their diffusion is significantly larger than that estimated from conductivity using the Nernst-Einstein equation. Published by AIP Publishing.
机译:脉冲场梯度核磁共振光谱和介电弛豫光谱已被用于研究不同离子含量的聚环氧乙烷(PEO)基磺酸锂离聚物中的锂动力学。离子含量由磺化邻苯二甲酸酯的比例和PEO间隔基的分子量决定,两者均可独立变化。离聚物的分子水平动力学取决于离子含量,间隔物长度,温度和离子聚集程度,主要取决于Vogel-Fulcher-Tammann或Arrhenius行为。在这些离聚物中,锂自扩散和观察到的电导率的主要决定因素是锂离子的离子含量和离子态,这受锂离子与聚合物醚氧的相互作用影响很大。由于许多锂离子通过分段聚合物运动以离子对状态运动,因此它们的扩散远大于使用能斯特-爱因斯坦方程根据电导率估算的扩散。由AIP Publishing发布。

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