Synthesis, electrochemistry and in situ spectroelectrochemistry of a new Co(III) thio Schiff-base complex with N,N′-bis(2-aminothiophenol)-1,4-bis(carboxylidene phenoxy)butane

Ismail Yilmaz*, Hamdi Temel, Hüseyin Alp

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

57 Citations (Scopus)

Abstract

A new cobalt Schiff-base complex, [Co(L)(OH)(H2O)] (where L = [N,N′-bis(2-aminothiophenol)-1,4-bis(carboxylidene phenoxy)butane), was synthesized and its electrochemical and spectroelectochemical properties were investigated using cyclic voltammetry (CV), differential pulse voltammetry (DPV) and thin-layer spectro-electrochemistry in solutions of dimethyl sulfoxide (DMSO) and dichloromethane (CH2Cl2). The [Co(L)(OH)(H2O)] complex displays two well-defined reversible reduction processes with the corresponding anodic waves. The half-wave potentials of the first and second reduction processes were displayed at E1/2 = 0.08 V and E1/2 = -1.21 V (scan rate: 0.100 Vs-1) in DMSO, and E1/2 = -0.124 V and E1/2 = -1.32 V (scan rate: 0.100 Vs-1) in CH2Cl2. The potentials of the reduction processes in DMSO are shifted toward negative potentials (0.220-0.112 V) compared to those in CH2Cl2. The electrochemical results are assigned to two one-electron reduction processes; [Co(III)L] + -e → [Co(II)L]- and [Co(II)L]- + -e → [Co(I)L]2-. The six-coordination of the complex remains unchanged during the reduction processes and the electron transfer processes were not followed by a chemical reaction upon scan reversal. It was also seen that [Co(L)(OH)(H2O)] was reduced at a more positive potential than the corresponding salen analogs. The shift and reversibility are apparently related to the high degree of electron delocalization of the [Co(L)(OH)(H2O)] complex, having a N2O2S2 donor set and two additional benzene units. Additionally, in situ spectroelectrochemical measurements support Co(III)/Co(II) and Co(II)/Co(I) reversible reduction processes with the observation of the corresponding spectral changes with the applied potentials Eapp = -0.40 and -1.60 V. Application of the spectroelectrochemical results allowed the determination ofE1/2 and n (the number of electrons) from the spectra of the fully oxidized and reduced species in one unified experiment as well. The results obtained by this method are in agreement with those by the CV and DPV methods.

Original languageEnglish
Pages (from-to)125-132
Number of pages8
JournalPolyhedron
Volume27
Issue number1
DOIs
Publication statusPublished - 20 Jan 2008

Funding

The support of the State Planning Organization (DPT, Project no. 90177) is gratefully acknowledged. This work has also been supported, in part, by the Turkish Academy of Sciences in the framework of the Young Scientist Award Program (TÜBA-GEBİP).

FundersFunder number
DPT90177
TÜBA-GEBİP
Devlet Planlama Örgütü
Türkiye Bilimler Akademisi

    Keywords

    • Cobalt
    • Electrochemistry
    • Schiff-base
    • Spectroelectrochemistry
    • Thiosalen

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