19 results on '"Jin-Myoung Lim"'
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2. Intrinsic enhancement of the rate capability and suppression of the phase transition via p-type doping in Fe–Mn based P2-type cathodes used for sodium ion batteries
3. Cu4SnS4-Rich Nanomaterials for Thin-Film Lithium Batteries with Enhanced Conversion Reaction
4. Thermally Activated P2‐O3 Mixed Layered Cathodes toward Synergistic Electrochemical Enhancement for Na Ion Batteries
5. Power characteristics of spinel cathodes correlated with elastic softness and phase transformation for high-power lithium-ion batteries
6. Design of a p-Type Electrode for Enhancing Electronic Conduction in High-Mn, Li-Rich Oxides
7. Design of Surface Doping for Mitigating Transition Metal Dissolution in LiNi0.5 Mn1.5 O4 Nanoparticles
8. Mechanism of Oxygen Vacancy on Impeded Phase Transformation and Electrochemical Activation in Inactive Li2 MnO3
9. Lithium Battery Cathodes: Concurrently Approaching Volumetric and Specific Capacity Limits of Lithium Battery Cathodes via Conformal Pickering Emulsion Graphene Coatings (Adv. Energy Mater. 25/2020)
10. Concurrently Approaching Volumetric and Specific Capacity Limits of Lithium Battery Cathodes via Conformal Pickering Emulsion Graphene Coatings
11. Atomic-Scale Observation of Electrochemically Reversible Phase Transformations in SnSe
12. Anti-fluorite Li6CoO4as an alternative lithium source for lithium ion capacitors: an experimental and first principles study
13. Ion‐Conductive, Viscosity‐Tunable Hexagonal Boron Nitride Nanosheet Inks
14. Design of Surface Doping for Mitigating Transition Metal Dissolution in LiNi
15. Atomic‐Scale Observation of Electrochemically Reversible Phase Transformations in SnSe 2 Single Crystals
16. Honeycomb-Like Spherical Cathode Host Constructed from Hollow Metallic and Polar Co9 S8 Tubules for Advanced Lithium-Sulfur Batteries
17. Cu4SnS4‑Rich Nanomaterials for Thin-Film Lithium Batteries with Enhanced Conversion Reaction.
18. Design of a p-Type Electrode for Enhancing Electronic Conduction in High-Mn, Li-Rich Oxides.
19. Curvature-induced secondary microflow motion in steady electro-osmotic transport with hydrodynamic slippage effect
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