Issue 3, 2004

Preparation, electrochemical and spectral properties of N-methylated pyridylethynyl porphyrins

Abstract

A new series of electron-deficient porphyrins were prepared by attaching one or two N-methylated 2-, 3- or 4-pyridylethynyl groups to the 10,20-meso positions of (5,15-biphenylporphinato)zinc(II). Electrochemical studies showed significant changes in the reduction potentials of these porphyrins, and N-methyl-2-pyridylethyne is the strongest electron-withdrawing substituent in the series. UV-visible spectra demonstrated largely red-shifted absorptions, and N-methyl-4-pyridylethyne has the greatest impact to the porphyrin absorptions. Electrochemical, UV-visible and EPR results concluded that porphyrins Zn2 and Zn6 reversibly undergo two one-electron porphyrin-ring reductions to their anion radicals then dianions. The first reductions of porphyrins Zn1, Zn3, Zn4 and Zn5 were irreversible one-electron transfer processes. The unstability of these reduction products was suggested to result from the eletrophilic attacks at the substituents.

Graphical abstract: Preparation, electrochemical and spectral properties of N-methylated pyridylethynyl porphyrins

Supplementary files

Article information

Article type
Paper
Submitted
28 Oct 2003
Accepted
04 Dec 2003
First published
05 Jan 2004

Dalton Trans., 2004, 456-462

Preparation, electrochemical and spectral properties of N-methylated pyridylethynyl porphyrins

C. Lin, L. Chuang, Y. Yang, C. Lin, H. Kao and W. Wang, Dalton Trans., 2004, 456 DOI: 10.1039/B313575F

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