梁红玉
- nullUnravelling High-load Superlubricity of Ionic Liquid Analogues by In situ Raman: Incomplete Hydration Induced by Competitive Exchange of External Water with Crystalline Water.The Journal of Physical Chemistry Letters,202314:453−459
- nullIn Situ Raman Study of Voltage Tolerance Up to 2.2 V of Ionic Liquid Analogue Supercapacitor Electrolytes Immune to Water Adsorption Conferred by Amphoteric Imidazole Additives.The Journal of Physical Chemistry Letters,202314:2347−2353
- nullAsymmetric contact synergy of unequal-sized soft and hard clusters in highly concentrated ZnCl2 for heterogeneous superlubricants[SCI].Tribology Letters,2024
- nullStable macroscopic liquid superlubricity induced by asymmetric contact of a mixture of unequal-diameter nanosphere additives.Ceramics International,202349:18728−18734
- nullStable low-friction carbon/epoxy composites using carbon nanocages stuffed with ionic liquids as fillers[SCI].Polymer composites,202243:8687-8695
- nullImpressive high-temperature lubrication of carbon/epoxy composites endowed by the microscopic dimensionality of carbon fillers[SCI].Wear,2021204109(486-487)
- nullFerroelectric benzimidazole additive-induced interfacial water confinement for stable 2.2V supercapacitor electrolytes exposed to air[SCI].Chemical Communications,202258(68):9536-9539
- nullCompetition-Induced Macroscopic Superlubricity of Ionic Liquid Analogues by Hydroxyl Ligands Revealed by in Situ Raman[SCI].Langmuir,202440(8):4277-4284
- nullTransforming Organic Molecular Films into Carbon Films as Solid Lubricants[Journal Paper].RSC Advances,20155(29):22305-22309
- nullA General Method for the Preparation of a Thickness-Controllable Fluoro-Containing Organic Film as a Solid Lubricant[Journal Paper].RSC Advances,20155(50):39884-39888