Latest Research in Advanced Battery Materials and Technologies
16 research papers · 2026 median publication year
Top Research Topics in Advanced Battery Materials and Technologies
- Advanced Battery Materials and Technologies — 11 papers
- Advanced battery technologies research — 4 papers
- Advancements in Battery Materials — 1 papers
Highest-Cited Papers
- Interfacial Electronic Coupling‐Activated 2H‐MoS 2 for Enhanced Sulfur Conversion Kinetics in Lithium–Sulfur Batteries
- Unveiling d-orbital antibonding state regulation and charge transfer mechanism for anchoring and catalytic performance of TM-TaS2 in lithium-sulfur batteries
- Transition metal anchoring on porous carbon for enhanced polysulfide stability and accelerated redox dynamics in Li–S and Al–S batteries
- Monolithic Host‐Separator Continuum Decouples Polyiodide Confinement and Reversibility in Lithium‐Iodine Batteries
- Potassium Salts of 9-Oxo-9 H -fluoren-4-carboxylic Acid: Phase Formation, Crystal Structure, and Electrochemical Behavior in Potassium-Ion Batteries
- Visualization of Asymmetric Calcium‐Sulfur Conversion Kinetics for High‐Capacity Sulfur Cathodes in Calcium Metal Batteries
- Electrolyte materials and interfacial engineering for high-energy-density aqueous potassium-ion batteries
- Separator‐Inspired Redox‐State‐Selective Confinement for Reversible Retention in Anthraquinone‐Based Aqueous Soft‐Gel Electrode Batteries
- Operando X‐ray Spectroscopy Unveils Light‐Driven Redox Selectivity for Photo‐Assisted Li–S Batteries
- Operando X‐ray Spectroscopy Unveils Light‐Driven Redox Selectivity for Photo‐Assisted Li–S Batteries
- Atomically Dispersed Manganese Electrocatalyst for Efficient Solid–Solid Conversion in Li–Se Battery
- The Creation of a Dual‐End Interface in Li─S Cathode by Anchoring Independent Metal Atoms on Graphdiyne
- Deciphering Electrocatalytic Sulfur Reduction Reactions in Al–S Batteries via Single-Particle Electrodes
- Graphdiyne‐Based Heteronuclear Dual‐Atom Catalysts Enable High‐Energy‐Density Lithium–Sulfur Batteries
- Electrolyte Engineering Challenges and Opportunities for Next‐Generation Aqueous Ammonium‐Ion Batteries
- Ion‐Adaptive Molecular Structure Facilitates Mg‐Ion Dynamic for High‐Capacity Aqueous Magnesium‐Ion Batteries