Latest Research in Advanced Battery Materials and Technologies

13 research papers · 2026 median publication year

Top Research Topics in Advanced Battery Materials and Technologies

Highest-Cited Papers

  1. Polyimide Separators Navigating Challenges and Opportunities in Next-Generation Lithium Batteries
  2. A Multifunctional Mesoporous Janus Separator With Optimized Mass Transport Regulation Enabling 800‐Cycle Lithium‐Oxygen Batteries
  3. Regulating Sodium Deposition Behavior via Polar Functional Group‐Based Interfacial Engineering on an Industrial‐Scale Anode for High‐Performance Na‐CO 2 Batteries
  4. Low‐Temperature Sodium‐Ion Batteries: Interfacial and Bulk Perspectives on Performance Limitations and Improvement Strategies
  5. In Situ SEI Engineering with Sodiophilic Zn Sites and Fluoride‑Rich Interphase by Perovskite KZnF 3 for Stable Sodium Metal Batteries
  6. Advanced Design Strategies for Stable Sodium Metal Anodes: A Review
  7. Covalently Anchored Multifunctional Interlayer Enables Ultrastable and Fast ‐ Charging Composite Solid ‐ State Sodium Metal Batteries
  8. Enabling Low‐Temperature Fast‐Charging Anode‐Free Sodium Metal Batteries: A Synergistic Design of Electrolyte Solvation and Current Collector Interface
  9. Local Electric‐Field Homogenization via Ferroelectric Grain‐Boundary Engineering Enables Long‐Life, High‐Rate Solid‐State Sodium Metal Batteries
  10. Synergistic Gradient Interphase Engineering for Ultra‐Stable and High‐Rate Quasi‐Solid‐State Sodium Metal Batteries
  11. A Dual‐Interface Stabilizing Additive for High‐voltage Sodium Metal Batteries
  12. Coordination Chemistry Enabled Multifunctional Electrolytes for High‐Rate and Long‐Cycle Sodium‐Metal Batteries
  13. A Stage‐Coupled View of Interfacial Reconstruction in Anode‐Free Sodium Metal Batteries
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L3 Region - - 2026 Sep Q3

Advanced Battery Materials and Technologies

13 papers

Top Topics (2)

Advanced Battery Materials and Technologies12
Advancements in Battery Materials1

Top Publications (13)

1.Polyimide Separators Navigating Challenges and Opportunities in Next-Generation Lithium Batteries2.A Multifunctional Mesoporous Janus Separator With Optimized Mass Transport Regulation Enabling 800‐Cycle Lithium‐Oxygen Batteries3.Regulating Sodium Deposition Behavior via Polar Functional Group‐Based Interfacial Engineering on an Industrial‐Scale Anode for High‐Performance Na‐CO 2 Batteries4.Low‐Temperature Sodium‐Ion Batteries: Interfacial and Bulk Perspectives on Performance Limitations and Improvement Strategies5.In Situ SEI Engineering with Sodiophilic Zn Sites and Fluoride‑Rich Interphase by Perovskite KZnF 3 for Stable Sodium Metal Batteries6.Advanced Design Strategies for Stable Sodium Metal Anodes: A Review7.Covalently Anchored Multifunctional Interlayer Enables Ultrastable and Fast ‐ Charging Composite Solid ‐ State Sodium Metal Batteries8.Enabling Low‐Temperature Fast‐Charging Anode‐Free Sodium Metal Batteries: A Synergistic Design of Electrolyte Solvation and Current Collector Interface9.Local Electric‐Field Homogenization via Ferroelectric Grain‐Boundary Engineering Enables Long‐Life, High‐Rate Solid‐State Sodium Metal Batteries10.Synergistic Gradient Interphase Engineering for Ultra‐Stable and High‐Rate Quasi‐Solid‐State Sodium Metal Batteries11.A Dual‐Interface Stabilizing Additive for High‐voltage Sodium Metal Batteries12.Coordination Chemistry Enabled Multifunctional Electrolytes for High‐Rate and Long‐Cycle Sodium‐Metal Batteries13.A Stage‐Coupled View of Interfacial Reconstruction in Anode‐Free Sodium Metal Batteries
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