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切断炔键:通过串联双迈克尔加成/反曼尼希级联反应完全裂解极化的 C≡C 部分。

Dissecting alkynes: full cleavage of polarized C≡C moiety via sequential bis-Michael addition/retro-Mannich cascade.

机构信息

Department of Chemistry and Biochemistry, Florida State University, Tallahassee, Florida 32306, USA.

出版信息

J Org Chem. 2011 Sep 16;76(18):7482-90. doi: 10.1021/jo201259j. Epub 2011 Aug 19.

Abstract

The reaction of diaryl ketoalkynes with 1,2-diamino ethane leads to the full scission of the triple bond with the formation of acetophenone and imidazoline fragments. In this transformation, one of the alkyne carbons undergoes formal reduction with the formation of three C-H bonds, whereas the other carbon undergoes formal oxidation via the formation of three C-N bonds (one π and two σ). Computational analysis confirmed that the key fragmentation step proceeds via a six-membered TS in a concerted manner. Both amines are involved in the fragmentation: the N-H moiety of one amine transfers a proton to the developing negative charge at the enolate oxygen, while the other amine provides direct stereoelectronic assistance to the C-C bond cleavage via a hyperconjugative n(N) → σ*(C-C) interaction.

摘要

二芳基炔与 1,2-二氨基乙烷的反应导致三键的完全断裂,生成苯乙酮和咪唑啉片段。在这种转化中,炔碳原子之一通过形成三个 C-H 键经历了形式还原,而另一个碳原子通过形成三个 C-N 键(一个 π 和两个 σ)经历了形式氧化。计算分析证实,关键的断裂步骤通过协同的六元过渡态进行。两个胺都参与了断裂:一个胺的 N-H 部分将质子转移到烯醇氧上形成的负电荷上,而另一个胺通过超共轭 n(N) → σ*(C-C) 相互作用提供直接的立体电子辅助,促进 C-C 键的断裂。

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