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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Single-ion conducting diblock terpolymers for lithium-ion batteries
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APS -APS March Meeting 2017 - Event - Single-ion conducting diblock terpolymers for lithium-ion batteries

机译:APS -APS 2017年3月会议-活动-锂离子电池单离子导电二嵌段三元共聚物

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摘要

Block polymer (BP) electrolytes provide an attractive route to overcome the competing constraints of high conductivity and mechanical/thermal stability in lithium-ion batteries through nanoscale self-assembly. For example, macromolecules can be engineered such that one domain conducts lithium ions and the other prevents lithium dendrite formation. Herein, we report on the behavior of a single-ion conducting BP electrolyte that was designed to facilitate the transport of lithium ions. These polymers differ from traditional salt-doped BP electrolytes, which require the addition of a lithium salt to bestow conductivity and typically suffer from substantial counterion motion that reduces efficiency. New single-ion BPs were synthesized, and the nanoscale morphologies were determined using small angle X-ray scattering and transmission electron microscopy. Electrolyte performance was measured using AC impedance spectroscopy and DC polarization, and the results were correlated to nanoscale morphology and ion content. Enhanced physical understanding of single-ion BPs was gained by connecting the ion mobility to the chemistry, chain structure, and ion content of the single-ion BP. These studies can be applied to other charged-neutral block polymers to elucidate the effects of ion content on self-assembly and macroscopic properties.
机译:嵌段聚合物(BP)电解质提供了一种有吸引力的途径,可以通过纳米级自组装克服锂离子电池中高电导率和机械/热稳定性的竞争性限制。例如,可以对大分子进行改造,使一个畴传导锂离子,而另一个畴阻止锂枝晶的形成。在本文中,我们报告了旨在促进锂离子运输的单离子导电BP电解质的行为。这些聚合物与传统的盐掺杂BP电解质不同,传统的盐掺杂BP电解质需要添加锂盐以赋予导电性,并且通常会遭受明显的抗衡离子运动,从而降低效率。合成了新的单离子BP,并使用小角X射线散射和透射电子显微镜确定了纳米级形貌。使用交流阻抗谱和直流极化测量电解质性能,并将结果与​​纳米级形态和离子含量相关。通过将离子迁移率与单离子BP的化学性质,链结构和离子含量联系起来,可以增强对单离子BP的物理理解。这些研究可以应用于其他带电中性嵌段聚合物,以阐明离子含量对自组装和宏观性能的影响。

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