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Updated: May 3, 2026

Scalable Syntheses of Graphene Oxide and Reduced Graphene Oxide using Cascade Design Oxidation and Highly Basic Reduction Reactions
Published on: July 3, 2025
Closed-loop graphite recycling from the manufacturing scrap graphite by sulfuric acid leaching combined with
Guoxuan Li1, Chao Chen2, Zibo Chen2
1School of Metallurgy and Environment, Central South University, Changsha 410083, China; National Engineering Research Centre of Low-carbon Nonferrous Metallurgy, Changsha 410083, China; Engineering Research Centre of Advanced Battery Materials, Ministry of Education, China.
Abstract:
The rapid expansion of lithium-ion battery (LIB) manufacturing generates large quantities of manufacturing scrap graphite. Recycling these industrial offcuts can alleviate the looming shortage of natural graphite and significantly reduce anode material costs. In this work, we report a purification strategy that combines sulfuric acid leaching with low-temperature oxidation to regenerate scrap graphite (SG). Sulfuric acid selectively removes metallic impurities, while mild oxidation eliminates organic binders. Leaching in 4 mol·L-1 H2SO4 at 90 °C for 2 h with a liquid-to-solid ratio of 10 mL·g-1, followed by oxidation at 350 °C for 1 h under O2, produces regenerated graphite (RG) with a purity of 99.58 wt%. The RG delivers a reversible capacity of 423.8 mAh·g-1 at 0.5C and retains 97% of its capacity after 200 cycles. The enhanced electrochemical performance was attributed to the impurity removal and moderate surface oxygen functionalization, which collectively promote rapid Li+ transport and interfacial stability. This work provides an environmentally friendly and practical pathway for the closed-loop recycling of graphite anodes in LIB manufacturing.
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