4.7 Article

Innovative Design for the Enhancement of Lithium Lanthanum Titanate Electrolytes

期刊

CRYSTAL GROWTH & DESIGN
卷 19, 期 9, 页码 4897-4901

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.cgd.9b00825

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资金

  1. Coordination and Improvement of Higher Level or Education Personnel (Capes) [001]
  2. Laboratory of Structural Characterization of the Materials Engineering Department (LCE/DEMa/UFSCar) at the Federal University of sao Carlos (sao Paulo Research Foundation,FAPESP) [2013/07793-6]
  3. Center for Research, Technology and Education in Vitreous Materials (CeRTEV) at the Federal University of sao Carlos (sao Paulo Research Foundation,FAPESP) [2013/17071-8]

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The high ionic conductivity in lithium lanthanum titanate perovskite ceramics, Li3xLa(2/3),TiO3(LLTO), is well-known for the x approximate to 0.11 lithium concentration. The grain conductivity is approximately 10 -3 S.cm(-1) at room temperature, which makes this compound one of the best candidates for the development of solid-state electrolytes. However, lower grain boundary conductivity (10(-6) to 10(-4) S.cm(-1)) blocks lithium diffusion. In order to increase the total conductivity of LLTO ceramics, single crystal fibers of lanthanum aluminate (LAO) were inserted into its green ceramic matrix. Our hypothesis is that single crystal fibers are capable of inducting LLTO abnormal grain growth, thus improving the overall electrical conductivity of the composite. The results show that LAO single crystals act like seeds, creating abnormal grain growth at the LaAlO3 fiber surface. The impedance spectroscopy shows that the new composites have a substantial relative enhancement of total ionic conductivity (more than 200%) in comparison with the monolithic ceramic samples. This result shows the possibility of developing a novel composite design as a candidate for solid electrolyte applications.

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