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Journal ArticleDOI

Selective Extraction of Transition Metals from Spent LiNixCoyMn1-x-yO2 Cathode via Regulation of Coordination Environment.

TLDR
Li et al. as discussed by the authors proposed a novel strategy for selective extraction of nickel, cobalt, and manganese from spent LiNixCoyMn1-x-yO2 (NCM) cathode through the regulation of coordination environment.
Abstract
The complexity of chemical compounds in lithium-ion batteries (LIBs) results in great difficulties in the extraction of multiple transition metals, which have similar physicochemical characteristics. Here, we propose a novel strategy for selective extraction of nickel, cobalt, and manganese from spent LiNixCoyMn1-x-yO2 (NCM) cathode through the regulation of coordination environment. Depending on adjusting the composition of ligand in transition metal complexes, a tandem leaching and separation system is designed and finally enables nickel, cobalt, and manganese to enrich in the form of NiO, Co3O4, and Mn3O4 with high recovery yields of 99.1%, 95.1%, and 95.3%, respectively. We further confirm that the combination of different transition metals with well-designed ligands is the key to good selectivity. Through our work, fine-tuning the coordination environment of metal ions is proved to have great prospects in the sustainable development of the battery recycling industry.

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Progress, Key Issues, and Future Prospects for Li‐Ion Battery Recycling

TL;DR: In this paper , the necessity for battery recycling is first discussed from several different aspects, and various recycling technologies that are currently used, such as pyrometric and hydrometallurgical methods, are summarized and evaluated.
Journal ArticleDOI

Prospects for managing end‐of‐life lithium‐ion batteries: Present and future

TL;DR: In this paper , the authors provide insights for the future course of full lifecycle management of lithium-ion batteries, proposing gradient utilization and recycling target predesign strategy, and acknowledge some recommendations for recycling waste end-of-life batteries and anticipate a collaborative effort to advance sustainable and reliable recycling routes.
Journal ArticleDOI

The application of deep eutectic solvents in lithium-ion battery recycling: A comprehensive review

TL;DR: In this article , a review summarizes the dissolution mechanism of valuable metals from lithium-ion battery cathode materials using deep-eutectic solvents (DESs), and an outlook was presented for the future development of DESs in the field of battery recycling.
Journal ArticleDOI

Comprehensive recycling of lithium-ion batteries: fundamentals, pretreatment, and perspectives

TL;DR: In this article , the authors comprehensively review and analyze the current state of technologies as well as the technical challenges and perspectives of all key aspects of comprehensive recycling and the involved pretreatment, including fundamentals of state-of-the-art technologies, operating strategies of different applications, technical and environmental issues, and future research directions to overcome these challenges.
References
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Journal ArticleDOI

Electrical Energy Storage for the Grid: A Battery of Choices

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Journal ArticleDOI

Deep Eutectic Solvents Formed between Choline Chloride and Carboxylic Acids: Versatile Alternatives to Ionic Liquids

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Journal ArticleDOI

X-ray photoelectron spectroscopic chemical state quantification of mixed nickel metal, oxide and hydroxide systems

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