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10.1038/s41467-024-55695-9 |
Li2ZrF6 protective layer enabled high-voltage LiCoO2 positive electrode in sulfide all-solid-state batteries
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2025 |
Nature Communications |
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Nature Portfolio |
28 |
cc-by-nc-nd |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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65,051자 |
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10.1038/s41467-024-54998-1 |
Transition metal vacancy and position engineering enables reversible anionic redox reaction for sodium storage
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2025 |
Nature Communications |
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Nature Portfolio |
42 |
cc-by-nc-nd |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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65,671자 |
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10.1038/s41467-024-52768-7 |
Electronic structure formed by Y2O3-doping in lithium position assists improvement of charging-voltage for high-nickel cathodes
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2025 |
Nature Communications |
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Nature Portfolio |
450 |
cc-by-nc-nd |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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54,967자 |
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10.1038/s41598-024-78927-w |
Chemical compatibility at the interface of garnet-type Ga-LLZO solid electrolyte and high-energy Li-rich layered oxide cathode for all-solid-state batteries
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2025 |
Scientific Reports |
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Nature Portfolio |
10 |
cc-by-nc-nd |
T10281 |
Advanced Battery Materials and Technologies |
solid state |
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55,450자 |
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10.1038/s41467-025-55862-6 |
Precisely designing asymmetrical selenium-based dual-atom sites for efficient oxygen reduction
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2025 |
Nature Communications |
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Nature Portfolio |
81 |
cc-by-nc-nd |
T11690 |
Advanced battery technologies research |
이차전지 |
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72,098자 |
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10.54254/2755-2721/2025.19567 |
Application and Future Development of Iron-chromium Flow Batteries
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2025 |
Applied and Computational Engineering |
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2 |
cc-by |
T11690 |
Advanced battery technologies research |
이차전지 |
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24,586자 |
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10.1038/s41467-024-55385-6 |
A tellurium iodide perovskite structure enabling eleven-electron transfer in zinc ion batteries
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2025 |
Nature Communications |
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Nature Portfolio |
17 |
cc-by-nc-nd |
T11690 |
Advanced battery technologies research |
이차전지 |
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48,118자 |
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10.20517/energymater.2024.51 |
Multifunctional zinc silicate coating layer for high-performance aqueous zinc-ion batteries
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2025 |
Energy Materials |
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16 |
cc-by |
T11690, T10281 |
Advanced battery technologies research, Advanced Battery Materials and Technologies |
이차전지, solid state |
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44,156자 |
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10.62239/jca.2021.087 |
Enhancement of electrochemical behavior with additives for vanadium redox flow battery electrolyte
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2025 |
Vietnam Journal of Catalysis and Adsorption |
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Iran University of Science and Technology |
0 |
cc-by-nc |
T11690 |
Advanced battery technologies research |
이차전지 |
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26,434자 |
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10.21203/rs.3.rs-5627423/v1 |
Hydroxide exchange membrane carbon capture using a nickel hydroxide symmetric battery cell
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2025 |
Research Square |
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0 |
cc-by |
T11690 |
Advanced battery technologies research |
이차전지 |
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43,276자 |