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首页> 外文期刊>Journal of solid state electrochemistry >A highly plastic Li+ ion conductor based on the KI-KBH4 solid solvent system
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A highly plastic Li+ ion conductor based on the KI-KBH4 solid solvent system

机译:基于Ki-KbH4固体溶剂系统的高塑料Li +离子导体

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In the present work, the dominant Li+ conduction in 6 mol% LiI-doped KI-KBH4 solid solvent was verified by electrochemical measurement and time-of-flight secondary ion mass spectrometry (TOF-SIMS). After the potentiostatic reduction of the cell Li | KI-KBH4-LiI | Mo at - 0.5 V vs Li+/Li, the deposition of Li metal on the surface of Mo electrode was confirmed by TOF-SIMS measurement. A pair of reduction and oxidation currents are clearly observed at 0 V vs Li+/Li in a cyclic voltammogram of the cell Li | KI-KBH4-LiI | Mo, which is a direct indication for Li+ ion conduction in the KI-KBH4 solid solvent system. From the results of AC impedance measurement of KI-KBH4-LiI, the bulk resistance was mainly observed while the solid electrolyte was pelletized only by uniaxial pressing. The dense microstructure of the pellet supports the results of impedance measurement where the contribution of grain boundary resistance was not observed. The extreme plastic property of the Li+ ion conductor based on KI-KBH4 will allow the interfaces between the solid electrolytes and electrode active materials to be adhered closely.
机译:在本作本作中,通过电化学测量和飞行时间二次离子质谱(TOF-SIM)验证了6mol%Lii掺杂的Ki-KbH4固体溶剂中的显性Li +传导。在细胞的电位减少后| ki-kbh4-lii | Mo在-0-5V Vs Li + / Li,通过TOF-SIMS测量证实了MO电极表面上的Li金属的沉积。在细胞Li的循环伏安图中,在0V VS Li + / Li中清楚地观察到一对还原电流ki-kbh4-lii | Mo,这是Ki-KbH4固体溶剂系统中Li +离子传导的直接指示。从Ki-KbH4-LiI的AC阻抗测量结果,主要观察到散热性,而仅通过单轴压制造粒固体电解质。颗粒的致密微观结构支持阻抗测量结果,其中未观察到晶际抗缘电阻的贡献。基于Ki-KbH4的Li +离子导体的极端塑料特性将允许固体电解质和电极活性材料之间的界面紧密粘附。

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