Publication Type Journal Article
Title Self-Assembled 3D Heterometallic Cu-II/Fe-II Coordination Polymers with Octahedral Net Skeletons: Structural Features, Molecular Magnetism, Thermal and Oxidation Catalytic Properties
Authors Yauhen Yu. Karabach M. Fátima C. Guedes da Silva Maximilian N. Kopylovich Beatriz Gil-Hernandez Joaquin Sanchiz A Kirillov Armando J.L. Pombeiro
Groups CCC BioMol
Journal INORGANIC CHEMISTRY
Year 2010
Month December
Volume 49
Number 23
Pages 11096-11105
Abstract The new three-dimensional (3D) heterometallic Cu-II/Fe-II coordination polymers [Cu-6(H(2)tea)(6)Fe(CN)(6)](n)(NO3)(2n)center dot 6nH(2)O (1) and [Cu-6(Hmdea)(6)Fe(CN)(6)](n)(NO3)(2n)center dot 7nH(2)O (2) have been easily generated by aqueous-medium self-assembly reactions of copper(II) nitrate with triethanolamine or N-methyldiethanolamine (H(3)tea or H(2)mdea, respectively), in the presence of potassium ferricyanide and sodium hydroxide. They have been isolated as air-stable crystalline solids and fully characterized including by single-crystal X-ray diffraction analyses. The latter reveal the formation of 3D metal-organic frameworks that are constructed from the [Cu-2(mu-H(2)tea)(2)](2+) or [Cu-2(mu-Hmdea)(2)](2+) nodes and the octahedral [Fe(CN)(6)](4-) linkers, featuring regular (1) or distorted (2) octahedral net skeletons. Upon dehydration, both compounds show reversible escape and binding processes toward water or methanol molecules. Magnetic susceptibility measurements of 1 and 2 reveal strong antiferromagnetic [J = -199(1) cm(-1)] or strong ferromagnetic [J = +153(1) cm(-1)] couplings between the copper(II) ions through the mu-O-alkoxo atoms in 1 or 2, respectively. The differences in magnetic behavior are explained in terms of the dependence of the magnetic coupling constant on the Cu-O-Cu bridging angle. Compounds 1 and 2 also act as efficient catalyst precursors for the mild oxidation of cyclohexane by aqueous hydrogen peroxide to cyclohexanol and cyclohexanone (homogeneous catalytic system), leading to maximum total yields (based on cyclohexane) and turnover numbers (TONs) up to about 22\% and 470, respectively.
DOI http://dx.doi.org/10.1021/ic101668f
ISBN
Publisher AMER CHEMICAL SOC
Book Title
ISSN 0020-1669
EISSN 1520-510X
Conference Name
Bibtex ID ISI:000284518800045
Observations
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