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10.3390/batteries11010025 |
Investigation of the Suitability of the DTV Method for the Online SoH Estimation of NMC Lithium-Ion Cells in Battery Management Systems
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2025 |
Batteries |
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Multidisciplinary Digital Publishing Institute |
5 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.1039/d4nr04897k |
Dextran stabilised hematite: a sustainable anode in aqueous electrolytes
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2025 |
Nanoscale |
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Royal Society of Chemistry |
2 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.1002/advs.202405457 |
Molecular Clip Strategy of Modified Sulfur Cathodes for High‐Performance Potassium Sulfur Batteries
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2025 |
Advanced Science |
열기 |
Wiley |
6 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.1073/pnas.2416817122 |
A room temperature rechargeable Li–LiNO <sub>3</sub> battery with high capacity
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2025 |
Proceedings of the National Academy of Sciences |
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National Academy of Sciences |
5 |
cc-by-nc-nd |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.1002/advs.202570010 |
1,8‐Diazabicyclo[5.4.0]undec‐7‐ene as Cyclic Ether Electrolyte Polymerization Inhibition for Wide‐Temperature‐Range High‐Rate Lithium‐ion Batteries (Adv. Sci. 2/2025)
|
2025 |
Advanced Science |
열기 |
Wiley |
0 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.3390/en18020261 |
Improving Performance and Safety of Lithium Metal Batteries Through Surface Pretreatment Strategies
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2025 |
Energies |
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Multidisciplinary Digital Publishing Institute |
5 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.3390/ma18020274 |
Optimal Blend Between Fluorinated Esters and Fluorinated Ether for High-Performance Lithium-Ion Cells at High Voltage
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2025 |
Materials |
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Multidisciplinary Digital Publishing Institute |
0 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.1039/d4sc08125k |
Electrolyte design weakens lithium-ion solvation for a fast-charging and long-cycling Si anode
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2025 |
Chemical Science |
열기 |
Royal Society of Chemistry |
16 |
cc-by-nc |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.1002/anie.202422714 |
Reductive Carbon Materials: Tailoring Chemistry and Electronic Properties to Improve Sodium‐Ion Batteries
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2025 |
Angewandte Chemie International Edition |
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Wiley |
7 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.1002/ange.202422714 |
Reduktive Kohlenstoffmaterialien: Einstellung der chemischen und elektronischen Eigenschaften zur Verbesserung von Natrium‐Ionen‐Batterien
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2025 |
Angewandte Chemie |
열기 |
Wiley |
2 |
other-oa |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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