含 P(C═X)P 配体(X = O、N)的镍配合物对重氮烷烃的反应活性:磷 Ylide 中间体的证据

IF 2.9 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
María L. G. Sansores-Paredes, Max Wendel, Martin Lutz and Marc-Etienne Moret*, 
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引用次数: 0

摘要

碳化镍在开发更具可持续性的催化剂方面备受关注,其中包括环丙烷化催化剂。在 P(C═C)P 镍钳形络合物中掺入了烯烃的碳化镍中间体的分子内捕获,从而分离出了镍环丁烷中间体,并对其反应活性进行了详细的表征。在此,我们报告了以重氮烷烃为碳烯前体、含有酮 P(C═O)P 或亚胺 P(C═N)P 的相关镍钳形复合物的反应性。观察到的反应性表明,在这两种情况下,瞬时碳化镍都会与其中一个膦臂发生反应,形成磷酰,随后与不饱和骨架发生反应。密度泛函理论(DFT)计算揭示了这些反应的机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Reactivity of Nickel Complexes Bearing P(C═X)P Ligands (X = O, N) Toward Diazoalkanes: Evidence for Phosphorus Ylide Intermediates

Reactivity of Nickel Complexes Bearing P(C═X)P Ligands (X = O, N) Toward Diazoalkanes: Evidence for Phosphorus Ylide Intermediates

Reactivity of Nickel Complexes Bearing P(C═X)P Ligands (X = O, N) Toward Diazoalkanes: Evidence for Phosphorus Ylide Intermediates

Nickel carbenes are attracting attention for the development of more sustainable catalysts, among others, for cyclopropanation. Intramolecular trapping of a nickel carbene intermediate with an olefin incorporated in a P(C═C)P Ni pincer complex had previously allowed the isolation of a nickelacyclobutane intermediate and a detailed characterization of its reactivity. Herein, we report the reactivity of related nickel pincer complexes bearing a ketone P(C═O)P or an imine P(C═N)P with diazoalkanes as the carbene precursor. The observed reactivity suggests, in both cases, the reaction of the transient nickel carbene with one of the phosphine arms to form phosphorus ylides that subsequently react with the unsaturated backbone. Density functional theory (DFT) calculations are used to shed light on the mechanisms of these reactions.

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来源期刊
Organometallics
Organometallics 化学-无机化学与核化学
CiteScore
5.60
自引率
7.10%
发文量
382
审稿时长
1.7 months
期刊介绍: Organometallics is the flagship journal of organometallic chemistry and records progress in one of the most active fields of science, bridging organic and inorganic chemistry. The journal publishes Articles, Communications, Reviews, and Tutorials (instructional overviews) that depict research on the synthesis, structure, bonding, chemical reactivity, and reaction mechanisms for a variety of applications, including catalyst design and catalytic processes; main-group, transition-metal, and lanthanide and actinide metal chemistry; synthetic aspects of polymer science and materials science; and bioorganometallic chemistry.
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