![]() |
- nullExploring viscosity metrics for hydrogen-bond dominated liquid superlubricity using ionic liquid analogue models[SCI].Colloids and Surfaces A: Physicochemical and Engineering Aspects,2025715:136614
- nullNon-Substituted Aromatic Pyridine N-Oxide Additives with an Intrinsic N→O Acceptor for Ultra-Long-Life Zn||MnO2 Batteries.Angewandte Chemie International Edition,2025:e202420183
- nullCost-Effective Conversion of "Stones" into High-Performance Capacitor Carbon through Solid-Solid Inorganic Chemical Reaction[SCI].Inorganic Chemistry Frontiers,202411(21):7390-7398
- nullEasy-to-Lay Poly-N Heterocyclic Additives Enable Long-Term Stabilization of Zinc-Ion Capacitor Anodes under Deep Plating/Stripping.Advanced Science,202411:2404323
- nullCarbon Dots as Ligand Operons to Expand Cluster Size Distribution for High Load-bearing Liquid Superlubricity
- nullPhosphonate-based supercapacitor electrolyte integrating the advantages of flame retardancy, extreme temperature adaptability, and anti-supergravity[SCI].Chemical Engineering Journal,2024485:149973
- nullAsymmetric Contact Synergy of Unequal-Sized Soft and Hard Clusters in Highly Concentrated ZnCl2 for Heterogeneous Superlubricants
- nullHighly Concentrated Electrolyte Superlubricants Enhanced by Interfacial Water Competition Around Chemically Active MgO Additives
- nullCompetition-Induced Macroscopic Superlubricity of Ionic Liquid Analogues by Hydroxyl Ligands Revealed by in Situ Raman
- nullIn situ formation of GeSe nanocrystals in carbon nanofiber network supports for ultra-thick sodium ion storage anodes via enhanced carrier transport[SCI].Journal of Alloys and Compounds,2023976:173365