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Updated: Jan 12, 2026

Facile Preparation of 2Z,4E-Dienamides by the Olefination of Electron-deficient Alkenes with Allyl Acetate
Published on: June 21, 2017
Bonding Analysis of Diazoalkenes and Alkylidene Ketenes: Carbone Analogues or Not?
Zuxian Zhang1, Lei Qin1, Zhaokai Ge1
1State Key Laboratory of Materials-Oriented Chemical Engineering, School of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing 211816, China.
Abstract:
We present a comprehensive bonding analysis of diazoalkenes and their isoelectronic counterparts, alkylidene ketenes. Although both feature a formal C-C-X framework (X = N2 or CO), reminiscent of classical L→C(0)←L carbones, their bonding characteristics differ significantly. In both systems, the central carbon engages in two electron-sharing interactions: one with the NHC ligand and the other with the terminal heteroallene moiety (N2 or CO). Bonding metrics, including Wiberg bond indices and Laplacian electron density analyses, further support this distinction, revealing significant electron sharing and continuous charge delocalization across the triatomic C-C-X frameworks. These findings challenge the classical double-dative description of these systems. Additionally, EDA-NOCV analysis confirms that orbital interactions dominate the total attractive energy with σ- and π-type electron-sharing interactions. To rationalize their unexpected stability, we propose a dual π-delocalization model: (i) in-plane π-conjugation across the C-C-X unit and (ii) out-of-plane π-backdonation from the central carbon to the terminal heteroallene. The cooperative delocalization mechanism collectively accounts for the unique bonding patterns and enhanced thermodynamic stability of these otherwise highly reactive main-group species.
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