Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/7438
Title: On processing structure–conductivity relations in NASICON-type LiSn2(PO4)3
Authors: Pareek, Tanvi
Badole, Manish
Kumar, Sunil
Keywords: Calcination;Lithium compounds;Powders;Solid state reactions;X ray diffraction;Calcination temperature;Complex impedance spectroscopy;Powder X ray diffraction;Rhombohedral structures;Solid state reaction method;Structural and electrical properties;Synchrotron x ray diffraction;Temperature dependent;Activation energy
Issue Date: 2021
Publisher: Springer
Citation: Pareek, T., Dwivedi, S., Badole, M., & Kumar, S. (2021). On processing structure–conductivity relations in NASICON-type LiSn2(PO4)3. Bulletin of Materials Science, 44(3) doi:10.1007/s12034-021-02460-z
Abstract: The present investigation focuses on understanding the structure–electric conductivity correlation in NASICON-type LiSn2(PO4)3 (LSP) powders prepared via solid-state reaction method. LSP powders synthesized at different temperatures were characterized for their structural and electrical properties using lab source powder X-ray diffraction (XRD), high-resolution synchrotron X-ray diffraction (SXRD) and complex impedance spectroscopy. LSP powders prepared in 900–1000°C temperature crystallize in triclinic structure (space group, P1¯) along with the small amount of SnO2 (P42/mnm) impurity phase. Samples prepared at temperatures in 1050–1250°C range showed a mixed rhombohedral (R3¯ c) and triclinic structure with the fraction of the triclinic phase decreasing with an increase in calcination temperature. On further increase in the calcination temperature to 1300°C, LSP transformed to the rhombohedral structure. Moreover, temperature-dependent SXRD confirmed that the LSP powder exhibits a martensitic behaviour, where a pure triclinic structure transforms into a pure rhombohedral phase at 170°C and retains a partial rhombohedral phase on cooling back to room temperature. The highest value of conductivity was found to be ~1.06 × 10–6 Scm–1 for the LSP powder with triclinic structure calcined at 900°C, with an associated activation energy of ~0.24 eV. Rhombohedral LSP calcined at 1300°C exhibits the lowest conductivity and highest activation energy at room temperature ~1.12 × 10–8 Scm–1 and ~0.39 eV, respectively. This decrease in conductivity for the supposedly high-conducting rhombohedral phase is attributed to the drastic increase in the fraction of the SnO2 impurity phase, as confirmed by the XRD analysis. © 2021, Indian Academy of Sciences.
URI: https://doi.org/10.1007/s12034-021-02460-z
https://dspace.iiti.ac.in/handle/123456789/7438
ISSN: 0250-4707
Type of Material: Journal Article
Appears in Collections:Department of Metallurgical Engineering and Materials Sciences

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