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Porphyrin based porous organic polymers: novel synthetic strategy and exceptionally high CO<sub>2</sub>adsorption capacity
276
Citations
33
References
2011
Year
Chemical EngineeringEngineeringNanoporous MaterialPorous Organic PolymersAromatic DialdehydesPorous CarbonPolymer ScienceNovel Synthetic StrategyFe-pops PossessOrganic ChemistryPorous PolymerCatalysisAdsorptionChemistryMetal-organic PolyhedronPolymer ChemistryPolymers
Iron containing porous organic polymers (Fe-POPs) have been synthesized by a facile one-pot bottom-up approach to porphyrin chemistry by an extended aromatic substitution reaction between pyrrole and aromatic dialdehydes in the presence of small amount of Fe(III). The Fe-POPs possess very high BET surface area, large micropores and showed excellent CO(2) capture (~19 wt%) at 273 K/1 bar.
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