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Enhancing the cycle life of recycled graphite materials from spent lithium-ion batteries via conductive polymer coating

Journal Article · · Journal of Power Sources

Not Available

Sponsoring Organization:
USDOE
Grant/Contract Number:
AC02-05CH11231
OSTI ID:
2479928
Journal Information:
Journal of Power Sources, Journal Name: Journal of Power Sources Journal Issue: C Vol. 629; ISSN 0378-7753
Publisher:
ElsevierCopyright Statement
Country of Publication:
Netherlands
Language:
English

References (22)

Polymers with Tailored Electronic Structure for High Capacity Lithium Battery Electrodes journal September 2011
A Mechanically Robust and Highly Ion-Conductive Polymer-Blend Coating for High-Power and Long-Life Lithium-Ion Battery Anodes journal November 2014
Recycling of graphite anode from spent lithium‐ion batteries: Advances and perspectives journal January 2023
The state of understanding of the lithium-ion-battery graphite solid electrolyte interphase (SEI) and its relationship to formation cycling journal August 2016
Li-ion battery recycling challenges journal November 2021
Greatly recovered electrochemical performances of regenerated graphite anode enabled by an artificial PMMA solid electrolyte interphase layer journal February 2023
Opportunity and challenges in recovering and functionalizing anode graphite from spent lithium-ion batteries: A review journal April 2024
A green and facile approach for regeneration of graphite from spent lithium ion battery journal December 2020
Recycling of spent lithium-ion batteries as a sustainable solution to obtain raw materials for different applications journal April 2023
The transformation of graphite electrode materials in lithium-ion batteries after cycling journal December 2015
Sustainable value chain of retired lithium-ion batteries for electric vehicles journal December 2020
Recycling lithium-ion battery graphite: Synthesis of adsorbent materials for highly efficient removal of dye and metal ions from wastewater journal June 2024
A process for combination of recycling lithium and regenerating graphite from spent lithium-ion battery journal February 2019
Toward Direct Regeneration of Spent Lithium-Ion Batteries: A Next-Generation Recycling Method journal March 2024
Graphite Recycling from the Spent Lithium-Ion Batteries by Sulfuric Acid Curing–Leaching Combined with High-Temperature Calcination journal June 2020
Design and Optimization of the Direct Recycling of Spent Li-Ion Battery Cathode Materials journal March 2021
Electrochemical Compatibility of Graphite Anode from Spent Li-Ion Batteries: Recycled via a Greener and Sustainable Approach journal May 2022
Closed-Loop Graphite Recycling from Spent Lithium-Ion Batteries through Bioleaching journal April 2023
High-Performance Graphite Recovered from Spent Lithium-Ion Batteries journal November 2019
Formation of hierarchically ordered structures in conductive polymers to enhance the performances of lithium-ion batteries journal January 2023
Cycling Behavior of NCM523/Graphite Lithium-Ion Cells in the 3–4.4 V Range: Diagnostic Studies of Full Cells and Harvested Electrodes journal September 2016
Improving the Performance at Elevated Temperature of High Voltage Graphite/LiNi 0.5 Mn 1.5 O 4 Cells with Added Lithium Catechol Dimethyl Borate journal December 2016

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