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10.1021/acsomega.4c08310 |
Impact of NaH on the Electrochemical Performance of Sodium Batteries
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2025 |
ACS Omega |
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American Chemical Society |
2 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.3390/coatings15010085 |
Facile Synthesis of Iron Phosphide Nanoparticles in 3D Porous Carbon Framework as Superior Anodes for Sodium-Ion Batteries
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2025 |
Coatings |
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Multidisciplinary Digital Publishing Institute |
1 |
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T10281 |
Advanced Battery Materials and Technologies |
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10.1002/inf2.12653 |
Advanced carbon as emerging energy materials in lithium batteries: A theoretical perspective
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2025 |
InfoMat |
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Wiley |
5 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.3390/en18020342 |
Lithium Battery Degradation and Failure Mechanisms: A State-of-the-Art Review
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2025 |
Energies |
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Multidisciplinary Digital Publishing Institute |
59 |
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T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.26434/chemrxiv-2025-3p3kn |
An extensive scaling-up oriented investigation on carbon felt flow- through and interdigitated Vanadium Flow Batteries cells
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2025 |
ChemRxiv |
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1 |
cc-by-nc-nd |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.26434/chemrxiv-2025-7v8kn |
Formation and Evolution of Solid Electrolyte Interphase at Calcium Surfaces
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2025 |
ChemRxiv |
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0 |
cc-by-nc-nd |
T10281 |
Advanced Battery Materials and Technologies |
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10.1039/d4ta06366j |
Dual protective layer on lithium metal anodes for improved electrochemical performance – in-depth morphological characterization
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2025 |
Journal of Materials Chemistry A |
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Royal Society of Chemistry |
3 |
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T10281 |
Advanced Battery Materials and Technologies |
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10.3390/batteries11010027 |
Unravelling Lithium Interactions in Non-Flammable Gel Polymer Electrolytes: A Density Functional Theory and Molecular Dynamics Study
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2025 |
Batteries |
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Multidisciplinary Digital Publishing Institute |
2 |
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T10281 |
Advanced Battery Materials and Technologies |
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10.1039/d4eb00015c |
Rapid construction of a tellurium artificial interface to form a highly reversible zinc anode
|
2025 |
EES batteries. |
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Royal Society of Chemistry |
6 |
cc-by-nc |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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10.1039/d4eb00005f |
Transport characterization of solid-state Li <sub>2</sub> FeS <sub>2</sub> cathodes from a porous electrode theory perspective
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2025 |
EES batteries. |
열기 |
Royal Society of Chemistry |
5 |
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T10281 |
Advanced Battery Materials and Technologies |
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