| Literature DB >> 23019427 |
Jean Garnier1, Douglas W Thomson, Shengze Zhou, Phillip I Jolly, Leonard E A Berlouis, John A Murphy.
Abstract
Neutral organic electron donors, featuring pyridinylidene-imidazolylidene, pyridinylidene-benzimidazolylidene and imidazolylidene-benzimidazolylidene linkages are reported. The pyridinylidene-benzimidazolylidene and imidazolylidene-benzimidazolylidene hybrid systems were designed to be the first super electron donors to convert iodoarenes to aryl radicals at room temperature, and indeed both show evidence for significant aryl radical formation at room temperature. The stronger pyridinylidene-imidazolylidene donor converts iodoarenes to aryl anions efficiently under appropriate conditions (3 equiv of donor). The presence of excess sodium hydride base has a very important and selective effect on some of these electron-transfer reactions, and a rationale for this is proposed.Entities:
Keywords: aryl iodide; electron transfer; hybrid donors; reduction
Year: 2012 PMID: 23019427 PMCID: PMC3458781 DOI: 10.3762/bjoc.8.112
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Super-electron-donors and related compounds.
Figure 2Cyclic voltammograms in DMF of 8/4 (red) and 21/11 (blue). Current plotted vs V (relative to Fc/Fc+ as standard).
Figure 4(a) c.v. in DMF of 7/2 (red), 6/1 (green) and 27/10 (blue); (b) c.v. in DMF of 27/10 at different scan rates. Current plotted vs V relative to Fc/Fc+.
Scheme 1Preparation of the oxidised disalts.
Scheme 2Reductive reactions of donor 11 [17–18].
Figure 3Cyclic voltammograms in DMF of 8/4 (red), 6/1 (green) and 22/9 (blue). Current plotted vs V relative to Fc/Fc+.
Scheme 3Reductive reactions of donor 9.
Scheme 4Use of hybrid donor 10 in reduction of iodoarenes.
Scheme 5Reductive chemistry from disalt 15.
Scheme 6Rationalisation of effect of excess NaH base.