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10.1039/d4ta05571c |
MnTiO<sub>3</sub> as a carbon-free cathode for rechargeable Li–O<sub>2</sub> batteries
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2025 |
Journal of Materials Chemistry A |
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Royal Society of Chemistry |
3 |
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10.1021/acsaem.4c03366 |
Quaternary Cu<sub>2</sub>TSiS<sub>4</sub> (T = Fe, Mn) Anodes for Li-Ion Batteries
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2025 |
ACS Applied Energy Materials |
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American Chemical Society |
0 |
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10.1155/er/3361478 |
Recycling Nd Magnet Scraps to Synthesize Carbon‐Swaddled Fe <sub>3</sub> O <sub>4</sub> Anode Material for Lithium‐Ion Battery
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2025 |
International Journal of Energy Research |
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Wiley |
2 |
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10.1002/cnl2.186 |
Priority Recovery of Lithium From Spent Lithium Iron Phosphate Batteries via H<sub>2</sub>O‐Based Deep Eutectic Solvents
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2025 |
Carbon Neutralization |
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Wiley |
15 |
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10.1038/s44359-024-00010-4 |
The evolution of lithium-ion battery recycling
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2025 |
Nature Reviews Clean Technology |
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119 |
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10.3390/met15010074 |
Optimizing Recycling Processes for Mixed LFP/NMC Lithium-Ion Batteries: A Comparative Study of Acid-Excess and Acid-Deficient Leaching
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2025 |
Metals |
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Multidisciplinary Digital Publishing Institute |
6 |
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10.1016/j.resconrec.2025.108130 |
Assessing the environmental burden of nickel sulfate for batteries: A life cycle perspective
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2025 |
Resources Conservation and Recycling |
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Elsevier BV |
9 |
public-domain |
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10.1039/d4ta07618d |
Environmentally friendly regeneration of graphite from spent lithium-ion batteries for sustainable anode material reuse
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2025 |
Journal of Materials Chemistry A |
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Royal Society of Chemistry |
24 |
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10.1038/s41598-025-86250-1 |
Impact of electric vehicle battery recycling on reducing raw material demand and battery life-cycle carbon emissions in China
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2025 |
Scientific Reports |
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Nature Portfolio |
24 |
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56,771자 |
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10.3390/nano15020113 |
Large-Scale Compatible Roll-to-Roll Coating of Paper Electrodes and Their Compatibility as Lithium-Ion Battery Anodes
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2025 |
Nanomaterials |
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Multidisciplinary Digital Publishing Institute |
0 |
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