- 235.<Chem. Eng. J.>Microbial Self-Driven Strategy to Construct High-Loading ZnS-Ni3S2 Heterostructures for Boosting Sodium Ion Capture
- 234.<Chem. Sci.>Curvature Enhanced NH2-MIL-53(Al) Electrode for Boosting Ion Diffusion and Capacitive Deionization Defluorination
- 233.<Sep. Purif. Technol.>Application of capacitive deionization in heavy metal ions removal and recovery: a review
- 232.<ACS Mater. Lett.>Advancements in Electrode Materials: The Role of MXenes in Capacitive Deionization Technology
- 231.<ENVIRON SCI-PROC IMP>Spatiotemporal distribution characteristics of physicochemical properties of waste plastics with different landfill age and depth
- 230.<Nano Energy> Monolithic Low-tortuous Copper(I) Phosphide Nanorod Arrays for Exceptional Areal Performance in Electrochemical Chloride Ion Remova
- 229.<Desalination>B/N doped Carbon Tubes Encapsulating Bi Material Using CAU-17 as a Template for High-Performance Capacitive Dechlorination
- 228.<Chem. Eng. J.>Interfacial-Confined In-Situ Growth of NiSe2/CoSe2 Nanoparticles on Fluoride-Free Ti3C2Tx for Enhanced Pseudocapacitive Ion Capture
- 227.<Adv. Funct. Mater.>Molecular Intercalation and Electron Modulation Stabilized 1T-MoS2 Superlattice Nanoflowers with Desolvation Regulation for Energy-Efficient Water Production
- 226.<Nano Today>Microbial Enzyme-catalyzed Synthesis of Low-Concentration Antisite Defects LiFePO4 for Boosting Lithium Ion Capture
- 225.<Sep. Purif. Technol.>Concentrated Biogas Slurry-Derived Porous Carbon Activated by KOH for High-Performance Capacitive Deionization
- 224.<ACS Appl. Mater.>Interfaces>Novel Tri-metallic MOFs (Zr-La-Ce) Adsorbent for Defluoridation with Ultra-high Selectivity and Performance Under a Wide pH Range
- 223.<Desalination>Bibliometrics and Systematic Reviews: Recent Development and Prospects of Electrode Materials for Capacitive Deionization
- 222.<Desalination>Flow-electrode capacitive deionization (FCDI): Selective recovery applications and expanded structural design
- 221.<Desalination>Advanced strategies for improving the energy efficiency of capacitive deionization technologies
- 220.<Sep. Purif. Technol.>Atomically Selective Oxidation of Double Transition-Metal TiVCTX MXene for Highly Selective Mg2+/Ca2+ Separation
- 219.<Green Energy Environ.>Dual-Selective Silver Recovery Strategy by Simultaneous Adsorption-Reduction Boosted by In-situ Magnetic Field
