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Effects of Inorganic Fillers on Electrochemical and Rheological Properties of Composite Polymer Electrolytes

机译:无机填料对复合聚合物电解质电化学和流变性能的影响

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Composite polymer electrolytes (CPEs) with significant lithium-ion conductivity, enhanced ion-transport properties, and good compatibility with lithium metal electrodes have attracted attention for rechargeable lithium batteries. Conventional CPEs are normally formed by dispersing ceramic fillers (e.g., A1_2O_3, TiO_2) into high-molecular weight (MW) poly(ethylene oxide) (PEO) polymers doped with lithium salts. Our group, however, is developing a new type of CPE based on low-MW PEO with fumed silica (SiO_2) fillers. Our CPEs yield a much higher conductivity (>10~(-3) S/cm at room-temperature) than conventional CPEs {I0~(-5) to 10~(-4) S/cm at room-temperature) due to less rigidity of the polymer chain. Solid-like mechanical strength (elastic modulus G'>10~5 Pa) and a significant improvement of lithium interfacial stability with incorporation of the fumed silica is also observed during cell cycling. The purpose of this work is to investigate the effects of varied inorganic fillers such as Al_2O_3, TiO_2, and mixtures of A1_2O_3 and SiO_2 on electrochemical and rheological properties of CPEs. One common feature of above-mentioned fillers and fumed silica is that they all have hydroxyl surface groups that may allow them to flocculate or form three-dimensional networks through hydrogen bonds. In addition, their surface chemistry can be modified by replacing these hydroxyl groups with other functional groups through chemical reactions. The ultimate purpose of this work is to explore the underlying mechanism that determines the effects of fillers on performance of composites and further optimize the properties of the composites.
机译:具有显着锂离子传导性,增强的离子转运性能和与锂金属电极的良好相容性具有显着的锂电池的复合聚合物电解质电解质电解质(CPE)引起了可再充电锂电池的关注。通常通过将陶瓷填料(例如,A1_2O_3,TiO_2)分散到掺杂锂盐的高分子量(MW)聚(环氧乙烷)(PEO)聚合物中来形成常规CPE。然而,我们的小组正在开发一种基于低MW PEO的新型CPE,具有熏蒸二氧化硅(SiO_2)填料。我们的CPES在室温下产生比常规CPES {I0〜(-5)至10〜(-4)S / cm在室温下的更高的电导率(> 10〜(-3)s / cm)。聚合物链的刚性较少。在细胞循环期间,还观察到固体的机械强度(弹性模量G'> 10〜5Pa)和利用掺入喷雾二氧化硅的锂界面稳定性的显着改善。本作作品的目的是探讨各种无机填料如Al_2O_3,TiO_2和A1_2O_3和SiO_2的混合物对CPE的电化学和流变性质的影响。上述填料和气相二氧化硅的一个共同特征是它们都具有羟基表面基团,其可以允许它们通过氢键絮凝或形成三维网络。另外,通过通过化学反应将这些羟基用其他官能团替换这些羟基来改变它们的表面化学。这项工作的最终目的是探讨确定填料对复合材料性能的影响的潜在机制,进一步优化复合材料的性质。

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