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Li 6 ALa 2 Nb 2 O 12 (A=Ca, Sr, Ba): A New Class of Fast Lithium Ion Conductors with Garnet‐Like Structure
Author(s) -
Thangadurai Venkataraman,
Weppner Werner
Publication year - 2005
Publication title -
journal of the american ceramic society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.9
H-Index - 196
eISSN - 1551-2916
pISSN - 0002-7820
DOI - 10.1111/j.1551-2916.2005.00060.x
Subject(s) - ionic radius , isostructural , alkaline earth metal , ionic conductivity , grain boundary , ionic bonding , ion , materials science , lithium (medication) , alkali metal , conductivity , analytical chemistry (journal) , inorganic chemistry , metal , mineralogy , chemistry , crystallography , crystal structure , metallurgy , electrolyte , microstructure , medicine , electrode , chromatography , endocrinology , organic chemistry
Garnet‐like structured metal oxides with the general formula Li 6 ALa 2 Nb 2 O 12 (A=Ca, Sr, Ba) have been prepared by solid‐state reaction using appropriate amounts of corresponding metal oxides, nitrates, and hydroxides. The powder X‐ray diffraction data reveal that Li 6 ALa 2 Nb 2 O 12 compounds are isostructural with the parent compound Li 5 La 3 Nb 2 O 12 . The cubic lattice parameter was found to increase with increasing size of the alkaline earth ions. The grain size decreases considerably with the substitution of La by the alkaline earth elements under the same preparation conditions. The Ca‐substituted compound exhibits both bulk and major grain boundary contributions to the total resistance, while the Sr‐ and Ba‐substituted compounds show mainly bulk resistance with a rather small grain boundary contribution (∼14% of the total resistance at 20°C) with further decrease with increasing temperature. In comparison, the ionic conductivity decreases with decreasing ionic radius of the alkaline earth elements. Among the investigated compounds, the Ba‐compound Li 6 BaLa 2 Nb 2 O 12 shows the highest ionic conductivity of 6 × 10 −6 S/cm at room temperature (22°C) and lowest activation energy of 0.44 eV compared with 0.55 and 0.50 eV for the corresponding Ca‐ and Sr‐ compounds, respectively. The ionic conductivity is comparable with that of parent Li 5 La 3 Nb 2 O 12 and other fast lithium ion conductors known so far.

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