2019
DOI: 10.1021/acs.accounts.9b00465
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The Electrogenerated Cyanomethyl Anion: An Old Base Still Smart

Abstract: The cathodic reduction of acetonitrile solutions containing a tetraalkylammonium salt leads to the formation of the cyanomethyl anion ( − CH 2 CN, cyanomethanide). This electrolysis can be carried out under very simple experimental conditions (constant-current electrolyses), using various cathodic materials, controlling the amount of base by simply controlling the amount of charge. Despite the fact that the mechanism for this electrochemical reaction is still debated (and it depends on the cathodic material), … Show more

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Cited by 30 publications
(14 citation statements)
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“…This is potentially due to an intermolecular radical chain transfer mediated by the reactive Me 2 CH-substituent (Scheme 3a). Non-aromatic alkenes (13)(14)(15)(16), exhibit full conversion to the corresponding ATRA products by 1 H NMR analysis. Volatility of these aliphatic products is the origin of their lower isolated yields.…”
Section: Electrocatalytic Atra (Eatra)mentioning
confidence: 99%
See 2 more Smart Citations
“…This is potentially due to an intermolecular radical chain transfer mediated by the reactive Me 2 CH-substituent (Scheme 3a). Non-aromatic alkenes (13)(14)(15)(16), exhibit full conversion to the corresponding ATRA products by 1 H NMR analysis. Volatility of these aliphatic products is the origin of their lower isolated yields.…”
Section: Electrocatalytic Atra (Eatra)mentioning
confidence: 99%
“…1, heterolysis of the Cu II -C bond generates Cu II and a carbanion (R -); a powerful base and nucleophile. 13 Alternatively, homolysis liberates a radical (R • ) and Cu I (Eqn. 2).…”
Section: Introductionmentioning
confidence: 99%
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“…Encouraged by this results, we could later apply other synthetic methods involving electrochemical solvent degradation in the construction of relevant heterocycles through electrogenerated‐bases (EGB) [45] and as multicomponent sequences (Scheme 4b) [46] . These procedures allow the preparation of 3‐substituted quinazolin‐2‐ones and 1,3‐thiazolines in an excellent fashion, thanks to the presence of cyanomethyl anion, formed by reduction of acetonitrile [47] …”
Section: Even More Sustainable Electrosynthesesmentioning
confidence: 99%
“…These methodologies generally involve the formation of charged species. Here, ion pairing plays an important role in solution, as indicated in recent publications [1][2][3][4]. The important role of ion pairing extends in fields like catalysis [5], organic synthesis [6][7][8], and the chemistry of flavonoids [9,10] and radical-induced DNA-strand breaks [11].…”
Section: Introductionmentioning
confidence: 96%