Unraveling the Mechanism of Pd-Catalyzed Hydrocyanation of Methylenecyclopropane or Cyclopropene with Me₂C(OH)CN: A DFT Study

Abstract

The multifaceted reactivities of methylenecyclopropane and cyclopropene have attracted broad interest. Density functional theory (DFT) calculations have been employed to elucidate the mechanism of the Pd-catalyzed hydrocyanation of Me₂C(OH)CN with methylenecyclopropane or cyclopropene, and to identify two distinct pathways. The first is a revised ring-opening pathway available to both substrates, beginning with oxidative addition of Pd(0) to the C–C bond of cyclopropene or methylenecyclopropane, followed by protonation by Me₂C(OH)CN, then β-C elimination, and reductive elimination. Conversely, the Lewis acid Al(OiPr)₃-promoted ring-retentive pathway for cyclopropene proceeds through a different initiation step in which Pd(0) reacts with Me₂C(OH)CN via a concerted transition state that features simultaneous C–C bond oxidative addition and oxygen-assisted hydrogen transfer from Al(OiPr)₃. This process generates a zwitterionic intermediate that subsequently undergoes hydrogen transfer to cyclopropene and reductive elimination to afford the ring-retentive product. The reaction sequence of the substrate is regulated by Al(OiPr)₃ through two factors: its coordination to the nitrogen atoms of Me₂C(OH)CN, which facilitates electron transfer from the Pd center, and the electron-rich nature of its oxygen atom.

Supplementary files

Article information

Article type
Paper
Submitted
03 Mar 2026
Accepted
23 Apr 2026
First published
25 Apr 2026

New J. Chem., 2026, Accepted Manuscript

Unraveling the Mechanism of Pd-Catalyzed Hydrocyanation of Methylenecyclopropane or Cyclopropene with Me₂C(OH)CN: A DFT Study

J. Li, K. Li and S. Qu, New J. Chem., 2026, Accepted Manuscript , DOI: 10.1039/D6NJ00814C

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