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Updated: Nov 27, 2025

Non-aqueous Electrode Processing and Construction of Lithium-ion Coin Cells
Published on: February 1, 2016
Recycling lithium cobalt oxide from its spent batteries: An electrochemical approach combining extraction and
Jianbo Wang1, Juan Lv1, Mingxing Zhang1
1Key Laboratory of Solid Waste Treatment and Resource Recycle, Ministry of Education, School of Environment and Resource, Southwest University of Science and Technology, 59 Qinglong Road, Mianyang 621010, Sichuan, People's Republic of China; Sichuan Provincial Engineering Lab of Non-metallic Mineral Powder Modification and High-Value Utilization, 59 Qinglong Road, Mianyang 621010, Sichuan, People's Republic of China.
Abstract:
LiCoO2 is still the most extensively used cathode material in Li-ion battery for portable electronics currently. The increasing usage of electronics has resulted in the growing discard of LiCoO2 with the stream of its spent battery. Current recycling approaches for LiCoO2 from spent batteries are dominantly based on hydrometallurgy and pyrometallurgy, which usually require multiple complicated steps and involve the use of high temperature or harmful chemicals, like acids and alkalis. There remains an urgent need for green and simple processes. Here we report a single step approach based on suspension electrolysis to directly recycle LiCoO2 in one reactor at atmospheric condition without any usage of acid and alkalis. The electrolyte of the suspension electrolysis system is only comprised of NH4HCO3, [Formula: see text] and NaF. The reaction system of LiCoO2 leaching in the anode region and simultaneously re-synthesizing in the cathode region in the electrochemical system is established. Mechanism analysis indicates that NH4+ only serves as a provider for complexing agent of NH3 and is virtually not consumed. This work provides potentially meaningful strategies for recovering LiCoO2 in a shorter procedure and an environmentally friendly manner.
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