Full Paper
One-Electron-Reduced and -Oxidized Stages of Donor-Substituted 1,1,4,4-Tetracyanobuta-1,3-dienes of Different Molecular Architectures
Article first published online: 18 JUL 2008
DOI: 10.1002/chem.200800716
Copyright © 2008 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Additional Information
How to Cite
Kivala, M., Stanoeva, T., Michinobu, T., Frank, B., Gescheidt, G. and Diederich, F. (2008), One-Electron-Reduced and -Oxidized Stages of Donor-Substituted 1,1,4,4-Tetracyanobuta-1,3-dienes of Different Molecular Architectures. Chem. Eur. J., 14: 7638–7647. doi: 10.1002/chem.200800716
Publication History
- Issue published online: 25 AUG 2008
- Article first published online: 18 JUL 2008
- Manuscript Received: 15 APR 2008
Funded by
- ETH Research Council. Grant Number: P 20019-N17
- NCCR “Nanoscale Science”
Keywords:
- charge transfer;
- conjugation;
- cycloaddition;
- donor–acceptor systems;
- EPR spectroscopy
Abstract
A series of monomeric and oligomeric donor-substituted 1,1,4,4-tetracyanobuta-1,3-dienes (TCBDs) with various topologies have been synthesized by means of thermal [2+2] cycloaddition between tetracyanoethylene (TCNE) and donor-substituted alkynes, followed by retro-electrocyclization. One-electron-reduced and -oxidized stages of the donor-substituted TCBDs were generated by chemical methods. The obtained radical anions and radical cations were studied by using electron paramagnetic resonance/electron nuclear double resonance (EPR/ENDOR) spectroscopy, supported by density functional theory (DFT) calculations. The extent of π-electron delocalization in the paramagnetic species was investigated in terms of the EPR parameters. Despite favorable molecular orbital (MO) coefficients, the EPR results suggest that in radical anions the spin and charge are confined to the electron-withdrawing TCBD moieties on the hyperfine EPR timescale. The observed spin localization is presumably caused by an interplay between the nonplanarity of the studied π systems, limited π-electron conjugation, and very likely counterion effects. In radical cations, an analogous spin and charge localization confined to the electron-donating N,N-dialkylaniline moieties was found. In this case, an efficient electron delocalization is disabled by small MO coefficients at the joints between the donor and acceptor portions of the studied TCBDs.

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