Journal article
Authors list: Schlem, Roman; Ghidiu, Michael; Culver, Sean P.; Hansen, Anna-Lena; Zeier, Wolfgang G.
Publication year: 2020
Pages: 9-18
Journal: ACS Applied Energy Materials
Volume number: 3
Issue number: 1
ISSN: 2574-0962
Open access status: Green
DOI Link: https://doi.org/10.1021/acsaem.9b01794
Publisher: American Chemical Society
Abstract:
The lithium argyrodites Li6PS5X (X = Cl, Br, and I) have been gaining momentum as candidates for electrolytes in all-solid-state batteries. While these materials have been well-characterized structurally, the influences of the static and dynamic lattice properties are not fully understood. Recent improvements to the ionic conductivity of Li6PS5I (which as a parent compound is a poor ionic conductor) via elemental substitutions have shown that a multitude of influences affect the ionic transport in the lithium argyrodites and that even poor conductors in this class have room left for improvement. Here we explore the influence of isoelectronic substitution of sulfur with selenium in Li6PS5-xSexI. Using a combination of X-ray diffraction, impedance spectroscopy, Raman spectroscopy, and pulse-echo speed of sound measurements, we explore the influence of the static and dynamic lattice on the ionic transport. The substitution of S2- with Se2- broadens the diffusion pathways and structural bottlenecks, as well as leading to a softer more polarizable lattice, all of which lower the activation barrier and lead to an increase in the ionic conductivity. This work sheds light on ways to systematically understand and improve the functional properties of this exciting material family.
Citation Styles
Harvard Citation style: Schlem, R., Ghidiu, M., Culver, S., Hansen, A. and Zeier, W. (2020) Changing the Static and Dynamic Lattice Effects for the Improvement of the Ionic Transport Properties within the Argyrodite Li6PS5-xSexI, ACS Applied Energy Materials, 3(1), pp. 9-18. https://doi.org/10.1021/acsaem.9b01794
APA Citation style: Schlem, R., Ghidiu, M., Culver, S., Hansen, A., & Zeier, W. (2020). Changing the Static and Dynamic Lattice Effects for the Improvement of the Ionic Transport Properties within the Argyrodite Li6PS5-xSexI. ACS Applied Energy Materials. 3(1), 9-18. https://doi.org/10.1021/acsaem.9b01794
Keywords
BR; DIFFUSION PATHWAYS; lattice dynamics; lithium argyrodites