2016
DOI: 10.1021/jacs.6b03282
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KOtBu: A Privileged Reagent for Electron Transfer Reactions?

Abstract: Many recent studies have used KOtBu in organic reactions that involve single electron transfer; in the literature, the electron transfer is proposed to occur either directly from the metal alkoxide or indirectly, following reaction of the alkoxide with a solvent or additive. These reaction classes include coupling reactions of halobenzenes and arenes, reductive cleavages of dithianes, and SRN1 reactions. Direct electron transfer would imply that alkali metal alkoxides are willing partners in these electron tra… Show more

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Cited by 271 publications
(166 citation statements)
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References 91 publications
(70 reference statements)
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“…[44] There is a growing body of literature in which KO t Bu plus associated ligands are capable of promoting transition metal-free cross-coupling reactions between arenes and aryl halides. [4557] Computational [58,59] and empirical studies implicate radical intermediates and electron transfer processes. While the findings from these reports may, in part, be applicable to our work, the formation of cine substitution products in the title reaction necessitates that aryne intermediates be considered alongside.…”
mentioning
confidence: 99%
“…[44] There is a growing body of literature in which KO t Bu plus associated ligands are capable of promoting transition metal-free cross-coupling reactions between arenes and aryl halides. [4557] Computational [58,59] and empirical studies implicate radical intermediates and electron transfer processes. While the findings from these reports may, in part, be applicable to our work, the formation of cine substitution products in the title reaction necessitates that aryne intermediates be considered alongside.…”
mentioning
confidence: 99%
“…[44] There is a growing body of literature in which KOtBu plus associated ligands are capable of promoting transition metal-free cross-coupling reactions between arenes and aryl halides. [45][46][47][48][49][50][51][52][53][54][55][56][57] Computational [58,59] and empirical studies implicate radical intermediates and electron transfer processes. While the findings from these reports may, in part, be applicable to our work, the formation of cine substitution products in the title reaction necessitates that aryne intermediates be considered alongside.…”
mentioning
confidence: 99%
“…As KO( t -Bu) does not have sufficient reducing power to generate ArI •− , it has been proposed that initiation could arise from the reaction of ArI and KO( t -Bu) to form benzyne or that organic electron donors form in situ with suitable additives under the basic conditions of the reaction [5860]. For example, observation of faster direct arylation in the presence of DMF led to proposals of deprotonated DMF as one electron donor [61] or forming a dibasic -enediol in situ as an electron donor [62]. …”
Section: Resultsmentioning
confidence: 99%