Synthesis and proton-coupled redox properties of mononuclear or asymmetric dinuclear complexes of ruthenium, rhodium and/or osmium containing 2,2′-bis(2-pyridyl)-6,6′-bibenzimidazole
- 1 January 1994
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in J. Chem. Soc., Dalton Trans.
- No. 3,p. 263-272
- https://doi.org/10.1039/dt9940000263
Abstract
New mononuclear and heterodinuclear complexes, [ML2(H2L1)]2+ and [L′2M(H2L1)M′L″2]4+[M, M′= Ru, Rh and/or Os; L′ or L″= 2,2′-bipyridine (bipy), 1,10-phenanthroline or 4,4′-dimethylbipyridine], containing the dinucleating ligand 2,2′-bis(2-pyridyl)-6,6′-bibenzimidazole (H2L1) have been prepared. The metal-to-ligand charge-transfer bands are almost unaltered when changing from the mono- to di-nuclear complexes, indicating that the bridging H2L1 ligand has slightly lower π* orbital energy than that of bipy. The bridging H2L1 ligand acts as a σ/π-donor ligand. Both the absorption spectra and the oxidation potentials of the complexes are strongly dependent on the solution pH, which determines the NH deprotonation of the co-ordinated ligand H2L1. The mononuclear complexes of Ru and Os act not only as basic acids but also as diacidic bases, while the heterodinuclear complexes essentially act as dibasic acids. The proton-coupled redox reaction was demonstrated by plots of E½vs. pH (Pourbaix diagrams). The pka values of the complexes reflect on both the type of metals and their oxidation states, MII and MIII. The introduction of asymmetry in the dinuclear complexes containing H2L1 can provide not only a potential difference between the two metal sites but also a preferential protonation (or deprotonation) site.Keywords
This publication has 50 references indexed in Scilit:
- Investigation of the photochemical, electrochemical, and spectroelectrochemical properties of an iridium(III)/ruthenium(II) mixed-metal complex bridged by 2,3,5,6-tetrakis(2-pyridyl)pyrazineInorganic Chemistry, 1993
- Monomeric and oligomeric complexes of ruthenium and osmium with tetra-2-pyridyl-1,4-pyrazine (TPPZ)Inorganic Chemistry, 1993
- Arborols Based on Luminescent and Redox‐Active Transition Metal ComplexesAngewandte Chemie International Edition in English, 1992
- Proton-induced switching of metal-metal interactions in dinuclear ruthenium and osmium complexes bridged by 2,2'-bis(2-pyridyl)bibenzimidazoleInorganic Chemistry, 1991
- Intersystem crossing to both ligand-localized and charge-transfer excited states in mononuclear and dinuclear ruthenium(II) diimine complexesJournal of the American Chemical Society, 1990
- Oligomeric dicyanobis(polypyridine)ruthenium(II) complexes. Synthesis, spectroscopic, and photophysical propertiesInorganic Chemistry, 1989
- Intervalence transfer in pentammineruthenium complexes of .alpha.,.omega.-dipyridyl polyenesInorganic Chemistry, 1989
- Synthesis and spectroscopic and electrochemical properties of mononuclear and dinuclear bis(2,2'-bipyridyl)ruthenium complexes containing 3,5-bis(pyridin-2-yl)-1,2,4-triazoleInorganic Chemistry, 1988
- Spectrophotometric and voltammetric characterization of complexes of bis(2,2'-bipyridine)(2,2'-bibenzimidazole)ruthenium and -osmium in oxidation states II, III, and IV in acetonitrile/water mixturesInorganic Chemistry, 1986
- Electrochemistry of vitamin B12. 2. Redox and acid-base equilibria in the B12a/B12r systemJournal of the American Chemical Society, 1977