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Probing the Lewis Acidity and Catalytic Activity of the Metal–Organic Framework [Cu<sub>3</sub>(btc)<sub>2</sub>] (BTC=Benzene‐1,3,5‐tricarboxylate)

Chemistry - A European Journal · 2006 · Vol. 12(28) · pp. 7353–7363
Luc AlaertsEtienne SéguinHilde PoelmanFrédéric Thibault‐StarzykPierre A. JacobsDirk De Vos

Abstract

An optimized procedure was designed for the preparation of the microporous metal-organic framework (MOF) [Cu3(btc)2] (BTC=benzene-1,3,5-tricarboxylate). The crystalline material was characterized by X-ray diffraction, optical microscopy, SEM, X-ray photoelectron spectroscopy, N2 sorption, thermogravimetry, and IR spectroscopy of adsorbed CO. CO adsorbs on a small number of Cu2O impurities, and particularly on the free CuII coordination sites in the framework. [Cu3(btc)2] is a highly selective Lewis acid catalyst for the isomerization of terpene derivatives, such as the rearrangement of alpha-pinene oxide to campholenic aldehyde and the cyclization of citronellal to isopulegol. By using the ethylene ketal of 2-bromopropiophenone as a test substrate, it was demonstrated that the active sites in [Cu3(btc)2] are hard Lewis acids. Catalyst stability, re-usability, and heterogeneity are critically assessed.

Metal-Organic Frameworks: Synthesis and ApplicationsMagnetism in coordination complexesPolyoxometalates: Synthesis and ApplicationsMetal-organic frameworkCatalysisLewis acids and basesChemistryBenzeneMicroporous materialHeterogeneous catalysisInorganic chemistryAdsorptionOrganic chemistry
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References
Functional Porous Coordination Polymers
Angewandte Chemie International Edition · 2004 · 10,890 citations
Metal–organic frameworks: a new class of porous materials
Microporous and Mesoporous Materials · 2004 · 2,886 citations
Metallo-organic molecular sieve for gas separation and purification
Microporous and Mesoporous Materials · 2002 · 768 citations
Metal–organic frameworks—prospective industrial applications
Journal of Materials Chemistry · 2005 · 2,276 citations
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