Advances in lithium-ion battery recycling enhance critical metal recovery and reduce carbon emissions

breakthroughs in lithi scaled


Breakthroughs in lithium-ion battery recycling to enhance critical metal recovery and reduce carbon emissions
Friction-induced infiltration of aluminum into nickel–cobalt–manganese (NCM) cathode crystals: During mechanical disassembly of spent LIBs in the recycling process, residual aluminum foil undergoes frictional contact and embeds into the NCM active material. This atomic-scale aluminum incorporation alters the crystal structure and suppresses the dissolution of critical metals (Ni, Co, Mn) across various extraction systems, including acid-based, ammonia-based, and deep eutectic solvents. Credit: Advanced Science (2025). DOI: 10.1002/advs.202570161

Lithium-ion batteries (LIBs) are widely used in consumer electronics, electric vehicles, and renewable energy systems, making efficient recycling crucial for sustainability. A research team led by Prof. Dan Tsang, Professor of Civil and Environmental Engineering at The Hong Kong University of Science…



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