Abstract
Here, we report the synthesis, structure and Li ion conductivity of new Sm-doped garnet-type Li 5+2x La 3 Nb 2-x Sm x O 12 (0 ≤ x ≤ 0.7). Powder X-ray diffraction showed the formation of cubic garnet structure up to x = 0.3. Above x = 0.3 impurity phases were observed, due to LiNbO 3 (the joint committee on powder diffraction standards (JCPDS) card No. 01-074-2239), LiSmO 2 (JCPDS Card No. 01-073-1061) and Sm 2 O 3 (JCPDS Card No. 15-0813). The cubic cell constant increased from 12.774(2) Å (x = 0) to 12.851(2) Å (x = 0.3). Scanning electron microscopy showed that Sm-doping results in an increase in density of the samples, as a result of improved particle-to-particle contact. Among the samples investigated, Li 5.6 La 3 Nb 1.7 Sm 0.3 O 12 , showed the highest conductivity of ∼10 −5 S cm −1 at 24 • C which is an order of magnitude higher than that of the parent compound, Li 5 La 3 Nb 2 O 12. The activation energy in the temperature range 25–225 • C decreased with an increase in Sm-dopant in Li 5+2x La 3 Nb 2-x Sm x O 12 (0.45 eV for x = 0.05 to 0.38 eV for x = 0.3). Fourier transform infrared spectroscopy studies revealed the presence of Li 2 CO 3 in both aged and fresh samples, while thermogravimetric analysis results showed that fresh samples exhibit a lower weight loss compared to the aged samples.
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CITATION STYLE
Pinzaru, D., & Thangadurai, V. (2014). Synthesis, Structure and Li Ion Conductivity of Garnet-like Li 5+2x La 3 Nb 2-x Sm x O 12 (0 ≤ x ≤ 0.7). Journal of The Electrochemical Society, 161(14), A2060–A2067. https://doi.org/10.1149/2.0241414jes
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