JOURNAL ARTICLE

Active-Site-Accessible, Porphyrinic Metal−Organic Framework Materials

Omar K. FarhaAbraham M. ShultzAmy A. SarjeantSonBinh T. NguyenJoseph T. Hupp

Year: 2011 Journal:   Journal of the American Chemical Society Vol: 133 (15)Pages: 5652-5655   Publisher: American Chemical Society

Abstract

On account of their structural similarity to cofactors found in many metallo-enzymes, metalloporphyrins are obvious potential building blocks for catalytically active, metal-organic framework (MOF) materials. While numerous porphyrin-based MOFs have already been described, versions featuring highly accessible active sites and permanent microporosity are remarkably scarce. Indeed, of the more than 70 previously reported porphyrinic MOFs, only one has been shown to be both permanently microporous and contain internally accessible active sites for chemical catalysis. Attempts to generalize the design approach used in this single successful case have failed. Reported here, however, is the synthesis of an extended family of MOFs that directly incorporate a variety of metalloporphyrins (specifically Al(3+), Zn(2+), Pd(2+), Mn(3+), and Fe(3+) complexes). These robust porphyrinic materials (RPMs) feature large channels and readily accessible active sites. As an illustrative example, one of the manganese-containing RPMs is shown to be catalytically competent for the oxidation of alkenes and alkanes.

Keywords:
Chemistry Microporous material Metal-organic framework Porphyrin Active site Catalysis Manganese Combinatorial chemistry Metal Nanotechnology Organic chemistry Adsorption

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Citation History

Topics

Metal-Organic Frameworks: Synthesis and Applications
Physical Sciences →  Chemistry →  Inorganic Chemistry
Porphyrin and Phthalocyanine Chemistry
Physical Sciences →  Materials Science →  Materials Chemistry
Magnetism in coordination complexes
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
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