79 results on '"Fang, Yongjin"'
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2. Access to advanced sodium-ion batteries by presodiation: Principles and applications
3. Achieving Rapid Sodiation/Desodiation Kinetics in NASICON-Structured Na3MnTi(PO4)3 via Cr Doping
4. Anion-doped Na2.9Fe1.7(SO4)2.7(PO4)0.3 cathode with improved cyclability and air stability for Low-cost Sodium-ion Batteries
5. Aromatic Ketones as Mild Presodiating Reagents toward Cathodes for High‐Performance Sodium‐Ion Batteries
6. Aromatic Ketones as Mild Presodiating Reagents toward Cathodes for High‐Performance Sodium‐Ion Batteries
7. Enabling Ultralow‐Temperature (−70 °C) Lithium‐Ion Batteries: Advanced Electrolytes Utilizing Weak‐Solvation and Low‐Viscosity Nitrile Cosolvent
8. The role of socioeconomic status and oxidative balance score in erectile dysfunction: A cross-sectional study
9. Correlating the Solvating Power of Solvents with the Strength of Ion‐Dipole Interaction in Electrolytes of Lithium‐ion Batteries
10. Correlating the Solvating Power of Solvents with the Strength of Ion‐Dipole Interaction in Electrolytes of Lithium‐ion Batteries
11. A novel Na8Fe5(SO4)9@rGO cathode material with high rate capability and ultra-long lifespan for low-cost sodium-ion batteries
12. Revealing the structural chemistry in Na6−2Fe (SO4)3 (1.5≤x≤2.0) for low-cost and high-performance sodium-ion batteries
13. Typical cathode materials for lithium‐ion and sodium‐ion batteries: From structural design to performance optimization
14. W‐Doping Induced Efficient Tunnel‐to‐Layered Structure Transformation of Na 0.44 Mn 1‐xWxO 2 : Phase Evolution, Sodium‐Storage Properties, and Moisture Stability
15. Towards extreme fast charging of 4.6 V LiCoO2 via mitigating high-voltage kinetic hindrance
16. Filling carbon: a microstructure-engineered hard carbon for efficient alkali metal ion storage
17. Influence of PC-based Electrolyte on High-Rate Performance in Li/CrOx Primary Battery
18. Revealing the Phase Evolution in Na4FexP4O12+x (2 ≤ x ≤ 4) Cathode Materials
19. Doping Regulation in Polyanionic Compounds for Advanced Sodium‐Ion Batteries
20. Ion‐Migration Mechanism: An Overall Understanding of Anionic Redox Activity in Metal Oxide Cathodes of Li/Na‐Ion Batteries
21. High-Voltage and Intrinsically Safe Sodium Metal Batteries Enabled by Nonflammable Fluorinated Phosphate Electrolytes
22. Revealing the phase evolution in Fe-based polyanionic cathode materials for low-cost and high-performance sodium-ion batteries: the case of Na4FexP4O12+x (2≤x≤4)
23. Anomalous Self‐Optimizing Microporous Graphene‐Based Lithium‐ion Battery Anode from Laser Activation of Small Organic Molecules
24. Understanding of the sodium storage mechanism in hard carbon anodes
25. An Overall Understanding of Sodium Storage Behaviors in Hard Carbons by an “Adsorption‐Intercalation/Filling” Hybrid Mechanism
26. Amorphous NaVOPO 4 as a High-Rate and Ultrastable Cathode Material for Sodium-Ion Batteries
27. Mixed polyanion cathode materials: Toward stable and high-energy sodium-ion batteries
28. Rational Design and Engineering of One‐Dimensional Hollow Nanostructures for Efficient Electrochemical Energy Storage
29. Rational Design and Engineering of One‐Dimensional Hollow Nanostructures for Efficient Electrochemical Energy Storage
30. A highly stable lithium metal anode enabled by Ag nanoparticle–embedded nitrogen-doped carbon macroporous fibers
31. Nitrogen‐Doped Amorphous Zn–Carbon Multichannel Fibers for Stable Lithium Metal Anodes
32. Nitrogen‐Doped Amorphous Zn–Carbon Multichannel Fibers for Stable Lithium Metal Anodes
33. An advanced low-cost cathode composed of graphene-coated Na2.4Fe1.8(SO4)3 nanograins in a 3D graphene network for ultra-stable sodium storage
34. Metal–Organic Frameworks Derived Functional Materials for Electrochemical Energy Storage and Conversion: A Mini Review
35. Recent Advances on Mixed Metal Sulfides for Advanced Sodium‐Ion Batteries
36. Co 3 O 4 Hollow Nanoparticles Embedded in Mesoporous Walls of Carbon Nanoboxes for Efficient Lithium Storage
37. Co 3 O 4 Hollow Nanoparticles Embedded in Mesoporous Walls of Carbon Nanoboxes for Efficient Lithium Storage
38. Double‐Shelled C@MoS 2 Structures Preloaded with Sulfur: An Additive Reservoir for Stable Lithium Metal Anodes
39. Double‐Shelled C@MoS 2 Structures Preloaded with Sulfur: An Additive Reservoir for Stable Lithium Metal Anodes
40. Rationally Designed Three‐Layered Cu 2 S@Carbon@MoS 2 Hierarchical Nanoboxes for Efficient Sodium Storage
41. Rationally Designed Three‐Layered Cu 2 S@Carbon@MoS 2 Hierarchical Nanoboxes for Efficient Sodium Storage
42. Ultralow‐Strain Zn‐Substituted Layered Oxide Cathode with Suppressed P2–O2 Transition for Stable Sodium Ion Storage
43. Synthesis of Copper‐Substituted CoS 2 @CuxS Double‐Shelled Nanoboxes by Sequential Ion Exchange for Efficient Sodium Storage
44. Synthesis of Copper‐Substituted CoS 2 @CuxS Double‐Shelled Nanoboxes by Sequential Ion Exchange for Efficient Sodium Storage
45. Nanostructured Electrode Materials for Advanced Sodium-Ion Batteries
46. Bullet‐like Cu 9 S 5 Hollow Particles Coated with Nitrogen‐Doped Carbon for Sodium‐Ion Batteries
47. Synthesis of CuS@CoS 2 Double‐Shelled Nanoboxes with Enhanced Sodium Storage Properties
48. Synthesis of CuS@CoS2 Double‐Shelled Nanoboxes with Enhanced Sodium Storage Properties
49. Bullet‐like Cu 9 S 5 Hollow Particles Coated with Nitrogen‐Doped Carbon for Sodium‐Ion Batteries
50. Synthesis of Cobalt Sulfide Multi‐shelled Nanoboxes with Precisely Controlled Two to Five Shells for Sodium‐Ion Batteries
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