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Updated: May 30, 2026

Determination of the Gas-phase Acidities of Oligopeptides
Published on: June 24, 2013
Nucleophilicity parameters for amines, amino acids and peptides in water. Variations in selectivities for quinone
1Chemistry Unit, Grove Building, School of Medicine, Swansea University, Swansea, Wales, UK SA2 8PP. t.w.bentley@swansea.ac.uk
Abstract:
Second order rate constants for reactions of 4,4'-dimethylaminobenzhydrylium cations with amines and other nucleophiles in water define a scale of nucleophilicity (N(+)'' = log k + 2.63). The N(+)'' scale can be extended by linking directly to an established N(+) scale based on reactions of methyl vinyl pyridinium cations with amine nucleophiles. Logarithms of rate constants for other benzhydrylium ions and quinone methides (QMs) are correlated by the equation: log k = s(E)N(+)'' + constant, having a nucleophilicity parameter (N(+)'' defined as in the Ritchie N(+) equation with N(+)'' = 4.75 for hydroxide ion), and an electrophile's response (selectivity) parameter (s(E), as in the Swain-Scott equation). Correlations for other benzhydrylium cations require only one slope and one intercept per cation, and fit data for up to 54 amines, amino acids and peptide nucleophiles; the slope s(E) increases as the reactivity of the cation decreases. Contrary to recent reports, s(E) is significantly less than unity for reactions of o- and p-benzoquinone methides. As the reactivities of QMs decrease, s(E) increases and the response of s(E) to changes in reactivity is larger for QMs than for cations.
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