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High performance composite polymer electrolytes using polymeric ionic liquid-functionalized graphene molecular brushes

机译:使用聚合物离子液体官能化石墨烯分子刷的高性能复合聚合物电解质

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A new structural design and tailored morphology of polymer-functionalized graphene (polymer-FG) are employed to optimize composite polymer electrolytes (CPEs). The ionic transfer conditions including Li salt dissociation, amorphous content and segmental mobility are significantly improved by incorporating polymer-FG, especially that having a polymeric ionic liquid (PIL) and a polymer brush structure [PIL(TFSI)-FG(brush)]. Electrical shorts are eliminated due to the presence of the functionalized polymer on reduced graphene oxide (RGO) and a minimal amount of polymer-FG in the PEO/Li+ polymer electrolytes (PEs). Polymer-FG with PIL brushes increases significantly the Li ion conductivity of PEO/Li+ PE by >2 orders of magnitude and similar to 20-fold at 30 degrees C and 60 degrees C with high Li salt loading (O/Li = 8/1), respectively. Furthermore, significant improvements in mechanical properties are observed where only 0.6 wt% addition of the PIL(TFSI)-FG(brush) led to more than 300% increase in the tensile strength of the PEO/Li+ at an O/Li ratio of 16/1. Li-ion battery performance was evaluated with the CPE containing 0.6 wt% of PIL(TFSI)-FG(brush), resulting in superior capacity and cycle performance compared to those of the PEO/Li+ PE. Thus, we believe, embedding minimal amounts of structurally and morphologically optimized polymer-FG nano-fillers can lead to the development of a new class of SPEs with high ionic conductivity for high performance all-solid-state Li-ion batteries.
机译:聚合物功能化石墨烯(polymer-FG)的新结构设计和量身定制的形态用于优化复合聚合物电解质(CPE)。通过掺入聚合物-FG,尤其是具有聚合物离子液体(PIL)和聚合物刷结构[PIL(TFSI)-FG(brush)]的聚合物,可以显着改善包括锂盐解离,无定形含量和分段迁移率在内的离子转移条件。由于在还原的氧化石墨烯(RGO)上存在官能化聚合物,并且PEO / Li +聚合物电解质(PEs)中的聚合物FG含量最少,因此消除了电短路。带有PIL刷的Polymer-FG可以显着提高PEO / Li + PE的锂离子电导率> 2个数量级,并且在30摄氏度和60摄氏度的高Li盐负载下(O / Li = 8/1)达到20倍), 分别。此外,观察到机械性能的显着改善,其中在O / Li比为16的情况下,仅添加0.6 wt%的PIL(TFSI)-FG(刷子)即可导致PEO / Li +的拉伸强度提高超过300% / 1。使用含0.6 wt%PIL(TFSI)-FG(刷子)的CPE评估了锂离子电池的性能,与PEO / Li + PE相比,其电容和循环性能更高。因此,我们认为,嵌入最少的结构和形态优化的聚合物-FG纳米填充剂可以导致开发一种新型的具有高离子电导率的SPE,以用于高性能全固态锂离子电池。

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