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Li-In alloy: preparation, properties, wettability of solid electrolytes based on Li7La3Zr2O12

机译:锂合金:基于Li7La3Zr2O12的固体电解质的制备、性能、润湿性

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摘要

In the presented work, Li-In alloys with 10 and 18 at Li were obtained. According to scanning electron microscopy, indium is evenly distributed in obtained alloys with different lithium contents. The atomic force microscopy study was used for elastic modulus investigation of Li-In alloys. It was established that obtained alloys are two-phase systems with matrix phase consisting of solid solution (alpha phase) and inclusions of the LiIn phase (beta phase) with individual domain sizes of 0.5-3 mu m. The wettability of the solid electrolyte based on Li7La3Zr2O12 with metallic In and Li-In alloy was study by high-temperature optical dilatometry. It was found that metallic indium wets ceramics better than obtained lithium-indium alloys. The symmetric cells with Li and Li-In alloy are assembled and studied. Li-In alloy application as an anode leads to significant reduction in the interface resistance between metallic anode and solid electrolyte from 37 to 0.4 k omega cm(2) at room temperature. The composite solid electrolyte does not degrade in contact with Li-In anode.
机译:在所提出的工作中,获得了Li含量为10和18 at%的Li-In合金。根据扫描电子显微镜,铟均匀分布在得到的锂含量不同的合金中。原子力显微镜研究用于Li-In合金的弹性模量研究。结果表明,所制备的合金为两相体系,基体相由固溶体(α相)和LiIn相(β相)夹杂物组成,单个晶畴尺寸为0.5-3 μ m。采用高温光学膨胀法研究了Li7La3Zr2O12基固体电解质与金属In和Li-In合金的润湿性。结果发现,金属铟比获得的锂铟合金更润湿陶瓷。组装并研究了Li和Li-In合金的对称电池。在室温下,锂合金作为阳极的应用可使金属阳极和固体电解质之间的界面电阻从 37 k ω cm(2) 显着降低到 0.4 k omega cm(2)。复合固体电解质与锂In阳极接触不会降解。

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