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March 26, 2026The Journal of Organic Chemistry0 citations

α-Alkylation of Nitriles with Alcohols in Air Catalyzed by Chromium Chloride under Microwave Irradiation and Ligand-Free Conditions

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HNHimani NarjinariAKAkshai Kumar

Key Points

  • The aim is to explore the catalytic activity of chromium(III) chloride for the α-alkylation of nitriles with alcohols.
  • Used 0.4 mol % chromium(III) chloride as a catalyst under microwave and conventional heating.
  • Implemented potassium tert-butoxide (30 mol %) as a base.
  • Examined a range of substrates for yield and selectivity variations.
  • Analyzed rate dependence on reactant concentrations and conducted Eyring plot analysis.
  • Achieved up to 99% yield in conventional heating and 93% in microwave heating.
  • Demonstrated moderate to good yields (up to 98%) across diverse substrates.
  • Identified the reaction rate as first-order concerning CrCl3·6H2O and KOtBu.
  • Found that benzyl nitrile inhibits the transition state, affecting rate determination.

Abstract

The commercially available 3d metal salt chromium(III) chloride (0.4 mol %) has demonstrated significant catalytic activity toward the highly selective α-alkylation of benzyl nitriles with benzyl alcohols in the presence of KOtBu (30 mol %) at 140 °C under conventional (99% yield, 24 h) as well as microwave (93% yield, 2 h) heating conditions. The methodology was well scrutinized for a large variation of substrates, which rendered moderate to good yields (up to 98%) with high selectivity. The experiment with elemental mercury suggests the involvement of molecular catalytic species in the reaction. The reaction exhibits a first-order rate dependence relative to the concentration of CrCl3·6H2O, KOtBu, and benzyl alcohol. However, in the case of benzyl nitrile, a linear dependence of the rate was observed only at low concentrations. This suggests the possibility of β-hydride elimination from Cr-benzyloxide as the rate-determining step of the catalytic cycle, with benzyl nitrile inhibiting the transition state. Not surprisingly, in instances where low α-alkylation activity was observed, the yields could be improved by the sequential addition of small portions of benzyl nitrile. Eyring plot analysis using the Arrhenius equation revealed the reaction to have an overall free energy barrier of about 28.6 kcal/mol.

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Cite This Study

Narjinari et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc37fdc3bde4489177e9https://doi.org/10.1021/acs.joc.5c03097
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