Room-Temperature Pseudo-Solid-State Iron Fluoride Conversion Battery with High Ionic Conductivity.

ACS Appl Mater Interfaces

Materials Physics Department, Sandia National Laboratories, 7011 East Avenue, Livermore, California 94550, United States.

Published: January 2023

Li-metal batteries (LMBs) employing conversion cathode materials (e.g., FeF) are a promising way to prepare inexpensive, environmentally friendly batteries with high energy density. Pseudo-solid-state ionogel separators harness the energy density and safety advantages of solid-state LMBs, while alleviating key drawbacks (e.g., poor ionic conductivity and high interfacial resistance). In this work, a pseudo-solid-state conversion battery (Li-FeF) is presented that achieves stable, high rate (1.0 mA cm) cycling at room temperature. The batteries described herein contain gel-infiltrated FeF cathodes prepared by exchanging the ionic liquid in a polymer ionogel with a localized high-concentration electrolyte (LHCE). The LHCE gel merges the benefits of a flexible separator (e.g., adaptation to conversion-related volume changes) with the excellent chemical stability and high ionic conductivity (∼2 mS cm at 25 °C) of an LHCE. The latter property is in contrast to previous solid-state iron fluoride batteries, where poor ionic conductivities necessitated elevated temperatures to realize practical power levels. The stable, room-temperature Li-FeF cycling performance obtained with the LHCE gel at high current densities paves the way for exploring a range of architectures including flexible, three-dimensional, and custom shape batteries.

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Source
http://dx.doi.org/10.1021/acsami.2c16332DOI Listing

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