Latest Research in Extraction and Separation Processes
18 research papers · 2026 median publication year
Top Research Topics in Extraction and Separation Processes
- Advancements in Battery Materials — 10 papers
- Advanced Battery Materials and Technologies — 6 papers
- Extraction and Separation Processes — 2 papers
Highest-Cited Papers
- APTES Functionalized Cellulose Nanofiber Gel‐Polymer Electrolytes for Lithium and Sodium‐Ion Batteries
- Cabbage‐Inspired Graphene Aerogel Microspheres as Efficient Micro‐Reactors for High‐Yield Production of Short Carbon Nanotubes Toward Li + Battery
- High-entropy stabilized NASICON cathode with accelerated Na+ transport for flexible aqueous sodium-ion batteries
- Anatomy of a SPAN Particle: A Four‐Level Structural Framework for Lithium–Sulfur Batteries
- Homogeneous Positive Surface Charge via Interfacial Amino‐yne Polymerization for Efficient Li + /Mg 2+ Separation
- Engineering Interfacial Chemistry of Spinel Indium Sulfides via Iron‐Substitution‐Mediated Selective Catalysis for High‐Performance Sodium‐Ion Batteries
- Multifunctional polyoxometalate-modified separator enabling superior Na ion transport kinetics and dendrite-free sodium metal batteries
- Aqueous Synthesis of Ionic Covalent Organic Framework Nanosheets towards Membrane-Based Li+/Mg2+ Separation
- Phosphate ester based nonaqueous electrolytes for sodium batteries
- Sub‐Monolayer Wrapping Stabilizes Magnesium Ion Cathode
- Sodium Formate as a High‐Capacity Cathode Presodiation Additive for Ultra‐Stable Sodium‐Ion Batteries
- Triethyl Phosphate Enables Regulated Solvation Structure and Robust Anode Interphase in Dual-Salt Mg(OTf)2-MgCl2 Electrolytes for Rechargeable Magnesium Batteries
- Anionic Bottom-Up Flux Orchestrated via Hard Carbon Surface Chemistry for Stable Sodium-Ion Batteries
- Enhancing the Interphasic Stability of Sodium-Ion Batteries via Structural Distortion-Driven Defluorination of Aromatic Additives
- Carbon‐Based Materials for Rechargeable Magnesium Batteries: Multifunctional Roles, Mechanistic Insights, and Future Perspectives
- A Dual‐Interface Stabilizing Additive for High‐voltage Sodium Metal Batteries
- Unlocking Ultra‐Long Cycling Stability in Fluorophosphate Cathodes via Electrostatic Interaction Regulation and Enhanced V─O Covalency
- Cation-aromatic nitrogen interaction as a design principle for sodium deep eutectic electrolytes