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Direct Recycling of β-Li3PS4-Based All-Solid-State Li-Ion Batteries : Interactions of Electrode Materials and Electrolyte in a Dissolution-Based Separation Process

, , , , , , and . Advanced energy & sustainability research, (2024)
DOI: 10.1002/aesr.202300280

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Cover Feature: Recycling of All-Solid-State Li-ion Batteries: A Case Study of the Separation of Individual Components Within a System Composed of LTO, LLZTO and NMC (ChemSusChem 13/2023), , , , , , , , , and 1 other author(s). ChemSusChem, 16 (13): e202300896 (2023)Direct Recycling of β-Li3PS4-Based All-Solid-State Li-Ion Batteries : Interactions of Electrode Materials and Electrolyte in a Dissolution-Based Separation Process, , , , , , and . Advanced energy & sustainability research, (2024)Recycling of All-Solid-State Li-ion Batteries : A Case Study of the Separation of Individual Components Within a System Composed of LTO, LLZTO and NMC, , , , , , , , , and 1 other author(s). ChemSusChem, 16 (13): e202202361 (2023)Towards Recycling of LLZO Solid Electrolyte Exemplarily Performed on LFP/LLZO/LTO Cells, , , , , , and . ChemistryOpen, 11 (3): e202100274 (2022)Dissolution and Recrystallization Behavior of Li3PS4 in Different Organic Solvents with a Focus on N-Methylformamide, , , , , , , , , and 2 other author(s). ACS applied energy materials, 6 (15): 7790-7802 (2023)