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- 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
- nullStable macroscopic liquid superlubricity induced by asymmetric contact of a mixture of unequal-diameter nanosphere additives
- nullNon-Faraday Electrolyte Additives for Capacitance Boosting by Compression of Dielectric Layer Thickness: Organic Ferroelectric Salts
- nullSqueezing excess meso/macropores via self-assembly of zeolitic imidazolate framework units to synthesize dense carbon for high-volume supercapacitors.Journal of Power Sources,2023563:232786
- nullUnravelling High-Load Superlubricity of Ionic Liquid Analogues by in Situ Raman: Incomplete Hydration Induced by Competitive Exchange of External Water with Crystalline Water
- nullFerroelectric benzimidazole additive-induced interfacial water confinement for stable 2.2 V supercapacitor electrolytes exposed to air
- nullRemoving Cost Barriers to Template Carbon Synthesis for High-Performance Supercapacitors by Establishing a Zero-Emission Chemical Cycle from CO2[SCI].ACS Energy Letters,20227:4381-4388
- nullStable low-friction carbon/epoxy composites using carbon nanocages stuffed with ionic liquids as fillers
- nullMacroscopic superlubricity of potassium hydroxide solution achieved by incorporating in-situ released graphene from friction pairs
- nullNano/micro bi-scale ordered carbon units via template heredity toward compact capacitive energy storage[SCI].Science China-Materials,2022