Lithium‐Ion Mobility in Layered Oxide Li 2 (La 0.75 Li 0.25 )(Ta 1.5 Ti 0.5 )O 7 Containing Lithium on both Intra and Inter‐Stack Positions
Author:
Affiliation:
1. Department of Chemistry University of Louisville Louisville KY 40292 USA
Funder
National Science Foundation
Publisher
Wiley
Subject
Inorganic Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/ejic.202100950
Reference50 articles.
1. Switching on Fast Lithium Ion Conductivity in Garnets: The Structure and Transport Properties of Li3+xNd3Te2−xSbxO12
2. Li10SnP2S12: An Affordable Lithium Superionic Conductor
3. Li14Ln5[Si11N19O5]O2F2 with Ln = Ce, Nd—Representatives of a Family of Potential Lithium Ion Conductors
4. Structural limitations for optimizing garnet-type solid electrolytes: a perspective
5. Dopant Concentration–Porosity–Li-Ion Conductivity Relationship in Garnet-Type Li5+2xLa3Ta2–xYxO12 (0.05 ≤ x ≤ 0.75) and Their Stability in Water and 1 M LiCl
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1. Recent advances and future perspectives of Ruddlesden–Popper perovskite oxides electrolytes for all‐solid‐state batteries;InfoMat;2024-06-11
2. Garnet-Type Lithium Metal Fluorides: A Potential Solid Electrolyte for Solid-State Batteries;ACS Applied Energy Materials;2022-12-28
3. Effect of structural symmetry on magnetic, electrical and electrocatalytic properties of isoelectronic oxides A2LaMn2O7 (A= Sr 2+, Ca2+);Journal of Physics and Chemistry of Solids;2022-12
4. Lithium‐Ion Mobility in Layered Oxide Li 2 (La 0.75 Li 0.25 )(Ta 1.5 Ti 0.5 )O 7 Containing Lithium on both Intra and Inter‐Stack Positions;European Journal of Inorganic Chemistry;2022-02-19
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