Fast Lithium Ion Conduction in Li2SnS3: Synthesis, Physicochemical Characterization, and Electronic Structure

作者:Brant Jacilynn A; Massi Danielle M; Holzwarth N A W; MacNeil Joseph H; Douvalis Alexios P; Bakas Thomas; Martin Steve W; Gross Michael D; Aitken Jennifer A*
来源:Chemistry of Materials, 2015, 27(1): 189-196.
DOI:10.1021/cm5037524

摘要

Li2SnS3 is a fast Li+ ion conductor that exhibits high thermal stability (mp similar to 750 degrees C) as well as environmental stability under ambient conditions. Polycrystalline Li2SnS3 was synthesized using high-temperature, solid-state synthesis. According to single-crystal X-ray diffraction, Li2SnS3 has a sodium chloride-like structure (space group C2/c), a result supported by synchrotron X-ray powder diffraction and Sn-119 Mossbauer spectroscopy. According to impedance spectroscopy, Li2SnS3 exhibits Li+ ion conductivity up to 1.6 x 10(-3) S/cm at 100 degrees C, which is among the highest for ternary chalcogenides. First-principles simulations of Li2SnS3 and the oxide analogue, Li2SnO3, provide insight into the basic properties and mechanisms of the ionic conduction. The high thermal stability, significant lithium ion conductivity, and environmental stability make Li2SnS3 a promising new solid-state electrolyte for lithium ion batteries.

  • 出版日期2015-1-13