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A pre-lithiated phloroglucinol based 3D porous framework as a single ion conducting electrolyte for lithium ion batteries

机译:基于锂离子电池的单离子传导电解质的基于预锂化的甘油蛋白基于三孔框架

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We report the design and synthesis of an inherently porous single ion conducting gel electrolyte made from a pre-lithiated phloroglucinol-terephthalaldehyde 3D framework for lithium ion batteries, adopting a “bottom-up” approach. The cationic transference number of the membrane obtained by blending the complex with PVDF–HFP followed by solution casting was found to be 0.86, close to unity. The mobile lithium ions shuttle through the low resistant pathways offered by the 3D network by virtue of its high porosity. The electrolyte offers a high ionic conductivity of 6.3 × 10 ~(?4) S cm ~(?1) at room temperature (22 °C), comparable to the values of most gel polymer electrolytes. Furthermore, the electrolyte membrane displays high thermal stability and good mechanical strength. Coin cells assembled with the membrane perform well at both room temperature and 80 °C.
机译:我们报告了由锂离子电池的预锂氨基氟喹啉醇 - 对苯二甲酰亚丙二醛3D框架制成的固有多孔单离子导电凝胶电解质的设计和合成,采用“自下而上”方法。通过将复合物与PVDF-HFP混合,然后发现溶液浇铸所获得的膜的阳离子转移数为0.86,接近Unity。移动锂离子通过高孔隙度通过3D网络提供的低抗性通路穿过抗性途径。电解质在室温(22℃)的室温(22℃)上提供6.3×10〜(α4)Cm〜(α1)的高离子电导率,与大多数凝胶聚合物电解质的值相当。此外,电解质膜显示出高热稳定性和良好的机械强度。用膜组装的硬币细胞在室温和80℃下表现良好。

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