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APS -APS March Meeting 2017 - Event - Connecting ion transport in polymer electrolytes across length scales

机译:APS -APS 2017年3月会议-活动-跨长度尺度的聚合物电解质中的离子传输连接

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Ion transport in polymers has been extensively studied in an attempt to improve upon the disadvantages of conventional liquid electrolytes. We combine pulsed-field gradient NMR diffusion measurements with electrochemical transport measurements in ethylene oxide based homo and block copolymer electrolytes in order to elucidate some of the connections between macroscopic properties like conductivity and molecular architecture, diffusion, and electrostatic interactions. In homopolymer electrolytes, a single diffusion coefficient governs transport from the micro to the mesoscale. In block copolymers, multiple diffusion regimes are seen at different length scales; diffusion on the microscale is faster than that on the mesoscale. In both materials, the strength of molecular interactions dictates how these molecular diffusion coefficients connect to macroscopic transport. We discuss how molecular interactions and diffusive processes inform bulk ion transport in polymer electrolytes.
机译:为了改善常规液体电解质的缺点,已经对聚合物中的离子传输进行了广泛的研究。我们将脉冲场梯度NMR扩散测量与环氧乙烷基均聚物和嵌段共聚物电解质中的电化学迁移测量结合起来,以阐明宏观性能(如电导率和分子结构,扩散和静电相互作用)之间的某些联系。在均聚物电解质中,单个扩散系数控制着从微观到中尺度的传输。在嵌段共聚物中,在不同的长度范围内可以看到多种扩散方式。微观尺度的扩散要快于中等尺度的扩散。在这两种材料中,分子相互作用的强度决定了这些分子扩散系数如何与宏观传输联系起来。我们讨论了分子相互作用和扩散过程如何通知聚合物电解质中的本体离子传输。

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