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Addressing Inherent Challenges to Chemical Relithiation of Cycled End-of-Life Cathode Materials: Article No. 2501809

  • Cyrus Kirwa
  • , Evelyna Wang
  • , Seoung-Bum Son
  • , Juliane Preimesberger
  • , Fulya Dogan Key
  • , Yaocai Bai
  • , Krzysztof Pupek
  • , Hongmei Luo
  • , Matthew Keyser
  • , Jaclyn Coyle
  • National Renewable Energy Laboratory
  • New Mexico State University
  • Argonne National Laboratory
  • Oak Ridge National Laboratory

Research output: Contribution to journalArticlepeer-review

6 Scopus Citations

Abstract

Recycling end-of-life (EOL) lithium-ion batteries (LIBs) is important to retain valuable resources from critical materials present in EOL battery waste. Direct recycling methods offer an opportunity to recover intact valuable cathode materials with minimal re-processing. An important step of the direct recycling process is relithiation which is used to restore lithium content to EOL cathode materials. However, little has been done to study how preprocessing steps such as washing or binder removal may affect relithiation methods in the direct recycling process. Here, the evolution of fluorine byproducts left over from preprocessing steps during a low-temperature chemical redox mediator relithiation process is tracked. A facile washing step is presented as a solution for mediating adverse effects of surface contamination on the chemical relithiation performance. The structure, lithium content, and electrochemical performance of relithiated EOL NMC 622 material that underwent a pre-relithiation washing step to remove fluorine byproducts is shown to match that of pristine NMC 622. In this work, it is showed that redox mediator relithiation as a part of a direct recycling process is a promising low energy method that can be applied to EOL material with inherent surface impurities if the proper pre-relithiation processing steps are implemented.
Original languageAmerican English
Number of pages11
JournalAdvanced Energy Materials
Volume15
Issue number46
DOIs
StatePublished - 2025

NLR Publication Number

  • NREL/JA-5K00-92124

Keywords

  • cathode material
  • critical minerals
  • direct recycling
  • end-of-life
  • lithium-ion batteries
  • redoxmediator
  • relithiation
  • solid-state NMR
  • surface chemistry

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