Fluidic Carbon Precursors for Formation of Functional Carbon under Ambient Pressure Based on Ionic Liquids
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Summary
A new strategy for the preparation of functional porous carbons is developed via direct, ambient-pressure, thermal pyrolysis of task-specific ionic liquids (ILs) with synergistic use of the negligible volatility of the ILs and incorporation of the crosslinkable nitrile groups in the anions.
- Type
- article
- Published
- 2010-03-05
- Cited by
- 325
- References
- 43
- OpenAlex
- https://openalex.org/W2010665646
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:34558520
Keywords
Materials science, Ionic liquid, Ambient pressure, Fluidics, Carbon fibers
References
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- Templated Synthesis of Pyridine Functionalized Mesoporous Carbons through the Cyclotrimerization of Diethynylpyridines
Cited by
- Synthesis of nanostructured carbon through ionothermal carbonization of common organic solvents and solutions.
- Heteroatom-Containing Porous Carbons Derived from Ionic Liquid-Doped Alkali Organic Salts for Supercapacitors.
- Computational study of catalytic effect of C3N4 on H2 release from complex hydrides
- Synthesis of Mesoporous Carbon for Carbon Dioxide Capture and Sequestration
- Ionic Liquid Based Approaches to Carbon Materials Synthesis
- One-pot synthesis of cobalt-coordinated N-doped carbon catalysts via co-synthesis of ionic liquids and cobalt porphyrins.
- Eutectic Syntheses of Graphitic Carbon with High Pyrazinic Nitrogen Content
- Intrinsic half-metallicity in fractal carbon nitride honeycomb lattices.
- Porous Carbon Supports: Recent Advances with Various Morphologies and Compositions
- Synthesis of Functional Nanomaterials in Ionic Liquids
- Domino games: Controlling structure and patterns of carbon nanomaterials in 2D & 3D
- Condensed Graphitic Carbon Nitride Nanorods by Nanoconfinement: Promotion of Crystallinity on Photocatalytic Conversion
- Tensile strain induced half-metallicity in graphene-like carbon nitride.
- Deep eutectic solvents: syntheses, properties and applications.
- Porous Li4Ti5O12 Coated with N‐Doped Carbon from Ionic Liquids for Li‐Ion Batteries
- Synthesis of palladium nanoparticles supported on mesoporous N-doped carbon and their catalytic ability for biofuel upgrade.
- Carbon materialization of ionic liquids
- Improved Li-storage performance of Li4Ti5O12 coated with C-N compounds derived from pyrolysis of urea through a low-temperature approach.
- Ionic liquid-mediated synthesis of meso-scale porous lanthanum-transition-metal perovskites with high CO oxidation performance.
- Origin of the half-metallic properties of graphitic carbon nitride in bulk and confined forms
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