Protonated paramagnetic redox forms of di- o-quinone bridged with p-phenylene-extended TTF: A EPR spectroscopy study

Beilstein J Org Chem. 2016 Nov 17:12:2450-2456. doi: 10.3762/bjoc.12.238. eCollection 2016.

Abstract

The chemical oxidation and reduction processes of deprotonated, direduced o-quinone-exTTF-o-quinone in protic solvents were studied by EPR spectroscopy. The formation of relatively stable paramagnetic protonated redox forms of the parent triad was very surprising. The character of spin-density distribution in the semiquinone-quinone and semiquinone-catechol redox forms indicates that the p-phenylene-extended tetrathiafulvalene connector provides a quite effective electronic communication channel between dioxolene coordination sites. It was found that the deprotonated, direduced o-quinone-exTTF-o-quinone is capable to reduction of the metal copper in solution. The radical anion species formed in this reaction exists in solution as a solvent-separated ion pair with a copper cation. A character of spin-density distribution in a radical anion species leads to the conclusion that the ligand corresponds to type III of the Robin-Day classification.

Keywords: EPR spectroscopy; acceptor–donor–acceptor triad; bridging ligand; extended tetrathiafulvalene; protonated semiquinone.