Journal of the American Chemical Society · 2013 · 153 citations · 23 references
Chemical EngineeringAxial LigandEngineeringNovel OrganocatalystsPorous CarbonEnhanced Catalytic ActivityLarge Axial LigandNerve Agent SimulantPore SizePorous PolymerOrganic ChemistryCatalysisMolecular CatalysisChemistryPolymer ChemistryCatalytic SynthesisMicropore EnvironmentPolymers
An Al(porphyrin) functionalized with a large axial ligand was incorporated into a porous organic polymer (POP) using a cobalt-catalyzed acetylene trimerization strategy. Removal of the axial ligand afforded a microporous POP that is catalytically active in the methanolysis of a nerve agent simulant. Supercritical CO2 processing of the POP dramatically increased the pore size and volume, allowing for significantly higher catalytic activities.
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Nanoporous organic polymer networks
Robert Dawson, Andrew I. Cooper, Dave J. Adams · Progress in Polymer Science · 2011 · 1.1K citations