Publication | Closed Access
Ultrastable Imine‐Based Covalent Organic Frameworks for Sulfuric Acid Recovery: An Effect of Interlayer Hydrogen Bonding
51
Citations
32
References
2018
Year
Membrane StructureEngineeringPorous MembraneOrganic ChemistryChemistryScalable SynthesisChemical EngineeringSo 4Crystalline CofsMetal-organic PolyhedronHybrid MaterialsMaterials ScienceSulfuric Acid RecoveryCovalent Bonded FrameworkInterlayer Hydrogen BondingFunctional MaterialsCatalysisSupramolecular ChemistryChemical TechnologyOrganic Material ChemistryCovalent Organic FrameworksOrganic-inorganic Hybrid Material
Abstract A rapid and scalable synthesis of six new imine‐linked highly porous and crystalline COFs is presented that feature exceptionally high chemical stability in harsh environments including conc. H 2 SO 4 (18 m ), conc. HCl (12 m ), and NaOH (9 m ). This is because of the presence of strong interlayer C−H⋅⋅⋅N hydrogen bonding among the individual layers, which provides significant steric hindrance and a hydrophobic environment around the imine (−C=N−) bonds, thus preventing their hydrolysis in such an abrasive environment. These COFs were further converted into porous, crystalline, self‐standing, and crack‐free COF membranes (COFMs) with extremely high chemical stability for their potential applications for sulfuric acid recovery. The as‐synthesized COFMs exhibit unprecedented permeance for acetonitrile (280 Lm −2 h −1 bar −1 ) and acetone (260 Lm −2 h −1 bar −1 ).
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