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Characterization and catalytic activity of iron(III) mono(4-N-methyl pyridyl)-tris(halophenyl) porphyrins in homogeneous and heterogeneous systems
Authors:Cynthia M C Prado-Manso  Ednalva A Vidoto  Fbio S Vinhado  Hrica C Sacco  Katia J Ciuffi  Patrícia R Martins  Antnio G Ferreira  John R Lindsay-Smith  Otaciro R Nascimento  Yassuko Iamamoto
Institution:

a Departamento de Química, FFCLRP, Universidade de São Paulo, Av. Bandeirantes, 3900, CEP 14040-901, Ribeirão Preto, SP, Brazil

b Instituto de Física de São Carlos, USP, São Carlos, SP, Brazil

c Instituto de Química, UNESP, Araraquara, SP, Brazil

d Departamento de Química, Universidade de Franca, Franca, SP, Brazil

e Departamento de Química, UFSCar, São Carlos, SP, Brazil

f Department of Chemistry, University of York, York, YO10 5DD, UK

Abstract:The synthesis, characterization and catalytic activity of the cationic iron porphyrins FeM(4-N-MePy)TDCPP]Cl2 and FeM(4-N-MePy)TFPP]Cl2 in the epoxidation of (Z)-cyclooctene by PhIO in homogeneous solution and supported on silica gel (SG), imidazole propyl gel (IPG) or SG modified with 2-(4-sulfonatophenyl)ethyl groups (SiSO3) have been accomplished. When supported on IPG, both cationic FeP bind to the support via Fe–imidazole coordination. FeM(4-N-MePy)TDCPP]IPG contains a mixture of low-spin bis-coordinated FeIIIP and high-spin mono-coordinated FeIIIP species, whereas FeM(4-N-MePy)TFPP]IPG only contains high-spin mono-coordinated FeIIIP. These FePIPG catalysts also contain FeIIP species, whose presence was confirmed by EPR spectroscopy using NO as a paramagnetic probe. Both cationic FePs coordinate to SG through Fe–O ligation and they are present as high-spin FeIIIP species. The cationic FePs supported on SiSO3 are also high-spin FeIIIP species and they bind to the support via electrostatic interaction between the 4-N-methylpyridyl groups and the SO3 groups present on the matrix. In homogeneous solution, both FeM(4-N-MePy)TDCPP]Cl2 and FeM(4-N-MePy)TFPP]Cl2 have similar catalytic activity to Fe(TDCPP)Cl and Fe(TFPP)Cl, leading to cis-epoxycyclooctane yields of 92%. When supported on inorganic matrices, both FePs lead to epoxide yields comparable to their homogeneous analogues and their anchoring enables catalyst recovery and re-use. Recycling of FeM(4-N-MePy)TDCPP]SiSO3 shows that this FeP maintains its activity in a second reaction.
Keywords:Cationic iron(III) porphyrin  Porphyrin  (Z)-Cyclooctene epoxidation  Supported catalysts  Anionic matrix
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