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◆ Chem Circularity2026-03-31· Materials science

Tailored solvent treatment for optimized production of upcycled anodes from end-of-life Li-ion batteries

Nicholas McKalip, Ankit Verma, Maxwell C. Schulze, John S. Mangum, Glenn Teeter, Zachary Berquist, Seoung‐Bum Son, Nina Prakash, Andrew M. Colclasure, Brian J. Ingram, Kae E. Fink

原始摘要(英文原文)· Original abstract
Recycling processes for lithium-ion batteries typically overlook graphite because of its lower market value relative to that of transition-metal-containing cathode materials. However, graphite recovered from cycled lithium-ion batteries holds additional engineered value associated with the solid-electrolyte interphase (SEI). The SEI contributes critical electronic passivation of the graphite surface but becomes highly resistive with extended cycling, yielding poor cell performance. In this work, we apply tailored solvent treatment to end-of-life (EOL) graphite anodes to selectively remove adverse SEI components while retaining beneficially passivating species. We evaluate a series of polar protic solvents to achieve targeted removal of SEI components and control selectivity through rational variation in solvent properties. The physiochemical properties of treatment solvents correlate with both the retained SEI composition and the corresponding electrochemical performance of solvent-treated "upcycled" graphite anodes. Within the initial set of solvents evaluated, top-performing candidates show capacity and Coulombic efficiency nearly equivalent to those of an analogous pristine anode, as well as promising electrochemical performance enhancement with regard to irreversible capacity-loss metrics. This study establishes critical design principles for an optimized anode upcycling method that enhances the value of recycled graphite by retaining and upgrading the SEI.
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Tailored solvent treatment for optimized production of upcycled anodes from end-of-life Li-ion batteries — 科研速览 Science Skim