4.8 Article

Excess lithium salt functions more than compensating for lithium loss when synthesizing Li6.5La3Ta0.5Zr1.5O12 in alumina crucible

Journal

JOURNAL OF POWER SOURCES
Volume 260, Issue -, Pages 109-114

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jpowsour.2014.02.065

Keywords

Garnet; Excess lithium salt; Alumina; Solid electrolyte; Li-air battery

Funding

  1. National Natural Science Foundation of China (NSFC) [51221291, 51172119]

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Garnet type electrolyte Li6.5La3Ta0.5Zr1.5O12 (LLZTO) was prepared by conventional solid-state reaction in alumina crucibles and excess lithium salt (from 0% to 50 mol%) was added into the starting materials to investigate the effects of excess lithium salt on the property of LLZTO. SEM, XRD and AC impedance were used to determine the microstructure, phase formation and Li-ion conductivity. Cubic garnet with a minor second phase LiAlO2 in the grain boundary was obtained for the pellets with excess lithium salt. As the amount of excess lithium salt increased, more Al element diffused from alumina crucibles to LLZTO pellets and reacted with excess lithium salt to form liquid Li2O -Al2O3 phase in the grain boundary, which accelerated the pellets' densification and reduced lithium loss at a high temperature. Ionic conductivity of LLZTO pellets increased with the amount of excess lithium salt added and leveled off at similar to 4 Chi 10(-4) S cm(-1) when lithium salt exceeded 30 mol%. The performance of Li-air batteries with hybrid electrolytes, using homemade LLZTO thin pellets as solid electrolytes, was investigated. The LLZTO thin pellet with more excess lithium salt in starting material had a higher density and resulted in better cell performance. (C) 2014 Elsevier B.V. All rights reserved.

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