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Fabrication and impedance analysis for designed composite layers with polymer and inorganic electrolytes leading to high conductivity

机译:具有聚合物和无机电解质的设计复合层的制造和阻抗分析,导致高导电性

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This study presents newly designed and produced solid Li-ion conductive composite layers based on polymer electrolytes and Li-ion-conducting particles. The composite layers are studied using AC impedance spectroscopy. The conductivity of the composite layers is 0.14 mS/cm at room temperature. We discuss the Li-ion transfer mechanism via a characteristic frequency of impedance analysis and show that the interior of Li-ion-conducting particles is the major Li-ion path. The activation energy is less than that of polymer electrolytes while being greater than that of the grain boundary of Li-ion-conducting particles. The newly designed composite layers could be utilized in solid-state Li-ion batteries and solid-state Li-air batteries.
机译:该研究介绍了基于聚合物电解质和锂离子导电颗粒的新设计和产生的固体锂离子导电复合层。 使用AC阻抗光谱研究复合层。 在室温下复合层的电导率为0.14ms / cm。 我们通过阻抗分析的特征频率讨论锂离子转移机制,并表明锂离子导电颗粒的内部是主要的锂离子路径。 活化能量小于聚合物电解质的电解质,同时大于锂离子导电颗粒的晶界的电解质。 新设计的复合层可用于固态锂离子电池和固态锂气体电池。

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