| Literature DB >> 26177563 |
Ali R Oveisi1, Kainan Zhang2, Ahmad Khorramabadi-zad3, Omar K Farha2, Joseph T Hupp2.
Abstract
A new porphyrin-based porous organic polymer (POP) with BET surface area ranging from 780 to 880 m(2)/g was synthesized in free-base form via the reaction of meso-tetrakis(pentafluorophenyl) porphyrin and a rigid trigonal building block, hexahydroxytriphenylene. The material was then metallated with Fe(III) imparting activity for Lewis acid catalysis (regioselective methanolysis ring-opening of styrene oxide), oxidative cyclization catalysis (conversion of bis(2-hydroxy-1-naphthyl)methanes to the corresponding spirodienone), and a tandem catalytic processes: an in situ oxidation-cyclic aminal formation-oxidation sequence, which selectively converts benzyl alcohol to 2-phenyl-quinazolin-4(3H)-one. Notably, the catalyst is readily recoverable and reusable, with little loss in catalytic activity.Entities:
Year: 2015 PMID: 26177563 PMCID: PMC4503946 DOI: 10.1038/srep10621
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Spirodienones and calix[n]arenes.
Figure 2Synthesis of Fb-PPOP (3) and Fe-PPOP (4).
Figure 3a) N2 isotherms of Fb-PPOP and Fe-PPOPs. b) BET-derived pore size distribution plots, and c) BJH adsorption pore size distributions for Fb-PPOP and Fe-PPOP. Each plot include the isotherms for the Fb-PPOP and the subsequently metallated Fb-PPOP (Fe-PPOP). BET surface area: Fb-PPOP: 877 m2/g; Fe-PPOP: 760 m2/g.
Figure 4SEM images of Fe-PPOP.
Figure 5The regioselective ring opening of styrene oxide catalyzed by Fe-PPOP.
Figure 6β-methoxyalcohol formation profile for the regieoselective ring opening of styrene oxide in the presence of Fe-PPOP catalyst (0.006 mmol Fe).
Figure 7Oxidative cyclization of bis(2-hydroxy-1-naphthyl)methanes to the corresponding spirodienones by Fe-PPOP.
Figure 8The tandem catalytic conversion of benzyl alcohol to 2-phenyl-quinazolin-4(3H)-one by Fe-PPOP.