Development of Lithium-Stuffed Garnet-Type Oxide Solid Electrolytes with High Ionic Conductivity for Application to All-Solid-State Batteries

离子电导率 锂(药物) 电解质 快离子导体 材料科学 电导率 氧化物 固溶体 硫化物 化学工程 分析化学(期刊) 阳极 化学稳定性 无机化学 化学 冶金 物理化学 电极 工程类 内分泌学 医学 色谱法
作者
Ryoji Inada,Satoshi Yasuda,Masaru Tojo,Keiji Tsuritani,Tomohiro Tojo,Yoji Sakurai
出处
期刊:Frontiers in Energy Research [Frontiers Media]
卷期号:4 被引量:55
标识
DOI:10.3389/fenrg.2016.00028
摘要

All-solid-state lithium-ion battery (LiB) is expected as one of the next generation energy storage devices because of their high energy density, high safety and excellent cycle stability. Although oxide-based solid electrolyte materials have rather lower conductivity and poor deformability than sulfide-based one, they have other advantages such as their chemical stability and easiness for handling. Among the various oxide-based SEs, lithium stuffed garnet-type oxide with the formula of Li7La3Zr2O12 (LLZ) have been widely studied because of their high conductivity above 10-4 Scm-1 at room temperature, excellent thermal performance and stability against Li metal anode.Here, we present our recent progress for the development of garnet-type solid electrolytes with high conductivity by simultaneous substitution of Ta5+ into Zr4+ site and Ba2+ into La3+ site in LLZ. Li+ concentration was fixed to 6.5 per chemical formulae, so that the formulae of our Li garnet-type oxide is expressed as Li6.5La3-xBaxZr1.5-xTa0.5+xO12 (LLBZT) and Ba contents x are changed from 0 to 0.3. As results, all LLBZT samples have cubic garnet structure without containing any secondary phases. The lattice parameters of LLBZT decrease with increasing Ba2+ contents x < 0.10 while increase with x from 0.10 to 0.30, possibly due to the simultaneous change of Ba2+ and Ta5+ substitution levels. Relative densities of LLBZT are in the range between 89% and 93% and not influenced so much by the compositions. From AC impedance spectroscopy measurements, the total (bulk + grain) conductivity at 27ºC of LLBZT shows its maximum value of 8.34 x 10-4 S cm-1 at x = 0.10, which is slightly higher than the conductivity (= 7.94 x 10-4 S cm-1) of LLZT without substituting Ba (x = 0). Activation energy of the conductivity tends to become lower by Ba substation, while excess Ba substitution degrades the conductivity in LLBZT. LLBZT has wide electrochemical potential window of 0-6 V vs. Li+/Li and reversible Li+ insertion and extraction reactions of TiNb2O7 film electrode formed on LLBZT by aerosol deposition are successfully demonstrated at 60ºC. The results indicate that LLBZT can potentially be used as a solid electrolyte in all-solid-state batteries.
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