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首页> 外文期刊>Journal of the European Ceramic Society >Ionic conduction, colossal permittivity and dielectric relaxation behavior of solid electrolyte Li3xLa2/3-xTiO3 ceramics
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Ionic conduction, colossal permittivity and dielectric relaxation behavior of solid electrolyte Li3xLa2/3-xTiO3 ceramics

机译:固体电解质Li3xLA2 / 3-Xtio3陶瓷的离子传导,巨大介电常数和介电弛豫行为

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摘要

Perovskite-type solid electrolyte lanthanum lithium titanate (LLTO), exhibiting high intrinsic ionic conductivity, has been attracting interests because of its potential use in all solid-state lithium-ion batteries. In this work, we prepared LLTO ceramics by solid state reaction method and studied their conductivity and dielectric properties systematically. It is found that the bulk conductivity of LLTO is several orders of magnitude higher than the grain boundary conductivity. In addition, colossal permittivity was observed in LLTO ceramics in wide frequency/temperature ranges. Two non-Debye type relaxation peaks were observed in the imaginary part of permittivity, resulting from Li+ ions motion and accumulation near interfaces of grains/grain boundaries/electrodes. It is suggested that colossal permittivity may originate from the lithium ion dipoles inside the samples and the interfacial polarization of lithium ion accumulation near the grain boundaries. These results clarify the relations among colossal permittivity, relaxation behavior and ionic conduction in solid ion conductor ceramics.
机译:钙钛矿型固体电解质钛酸镧锂(LLTO)因其在全固态锂离子电池中的潜在应用而备受关注,具有很高的固有离子导电性。本文采用固相反应法制备了LLTO陶瓷,并对其导电性和介电性能进行了系统的研究。研究发现,LLTO的体电导率比晶界电导率高几个数量级。此外,在较宽的频率/温度范围内,LLTO陶瓷中观察到了巨大的介电常数。在介电常数的虚部观察到两个非德拜型弛豫峰,这是由Li+离子在晶粒/晶界/电极界面附近的运动和积累引起的。结果表明,巨大的介电常数可能来源于样品内部的锂离子偶极子和晶界附近锂离子积累的界面极化。这些结果阐明了固体离子导体陶瓷的巨介电常数、弛豫行为和离子传导之间的关系。

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