Methyl Cation Affinities of Canonical Organic Functional Groups

Methyl cation affinities are calculated for the canonical nucleophilic functional groups in organic chemistry. These methyl cation affinities, calculated with a solvation model (MCA*), give an emprical correlation with the N s N term from the Mayr equation under aprotic conditions when they are scal...

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Veröffentlicht in:Journal of organic chemistry 2021-03, Vol.86 (5), p.3721-3729
Hauptverfasser: Kadish, Dora, Mood, Aaron D, Tavakoli, Mohammadamin, Gutman, Eugene S, Baldi, Pierre, Van Vranken, David L
Format: Artikel
Sprache:eng
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Zusammenfassung:Methyl cation affinities are calculated for the canonical nucleophilic functional groups in organic chemistry. These methyl cation affinities, calculated with a solvation model (MCA*), give an emprical correlation with the N s N term from the Mayr equation under aprotic conditions when they are scaled to the Mayr reference cation (4-MeOC6H4)2CH+ (Mayr E = 0). Highly reactive anionic nucleophiles were found to give a separate correlation, while some ylides and phosphorus compounds were determined to give a poor correlation. MCA*s are estimated for a broad range of simple molecules representing the canonical functional groups in organic chemistry. On the basis of a linear correlation, we estimate the range of nucleophilicities of organic functional groups, ranging from a C–C bond to a hypothetical tert-butyl carbanion, toward the reference electrophile to be about 50 orders of magnitude.
ISSN:0022-3263
1520-6904
DOI:10.1021/acs.joc.0c02327