期刊
DALTON TRANSACTIONS
卷 43, 期 39, 页码 14554-14564出版社
ROYAL SOC CHEMISTRY
DOI: 10.1039/c4dt00221k
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资金
- Centre National de la Recherche Scientifique
- Conseil Regional de Bourgogne
- Universite de Bourgogne
The electrochemical oxidation of nickel(II) 5,15-p-ditolyl-10-phenylporphyrin (1-Ni) leads to the formation of different coupling products, with the distribution depending on the nature of the solvent (CH2Cl2-CH3CN, CH2Cl2, DMF), the cell configuration (2 or 3 compartments) and the number of electrons abstracted. In a two compartment configuration (anode and cathode in the same compartment) in a CH2Cl2-CH3CN mixture, nickel(II) 5-chloro-10,20-p-ditolyl-15-phenylporphyrin (1-Ni-Cl) was isolated in good yield and its mechanism of formation is proposed. Switching to the three compartment configuration, the meso-beta/meso-beta doubly fused dimer (3-Ni) is detected as the major product whereas in pure CH2Cl2, the singly bonded meso-beta dimer (2'-Ni) is the major product; in both cases a significant amount of 1-Ni-Cl is also produced. These results are in accordance with the cyclic voltammetry analysis of 1-Ni measured in CH2Cl2-CH3CN and CH2Cl2 from which the voltammetric trace of 3-Ni is, respectively, appearing or not. In DMF the hydroxyporphyrin 1-Ni-OH was detected as the major product. Furthermore, meso-functionalization of 1-Ni was performed by controlled potential electrolysis with triphenylphosphine as the nucleophile leading to the phosphonium substituted derivative (1-Ni-P+) in good yield. Finally, unprecedented X-ray crystallographic structures of 1-Ni, 1-Ni-Cl, 1-Ni-P+ and 3-Ni are presented and their respective structural parameters compared.
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