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钴介导的不对称内杂芳基炔烃与降冰片烯的分子间 Pauson-Khand 反应中的区域化学。

Regiochemistry in cobalt-mediated intermolecular Pauson-Khand reactions of unsymmetrical internal heteroaromatic alkynes with norbornene.

机构信息

Department of Chemistry, University of York, Heslington, York, YO10 5DD, UK.

出版信息

J Org Chem. 2011 Jul 1;76(13):5320-34. doi: 10.1021/jo200664m. Epub 2011 Jun 2.

Abstract

The intermolecular Pauson-Khand (PK) reactions of sterically comparable (2-phenylethynyl)heteroaromatic compounds with norbornene, mediated by Co(2)(CO)(8) to give cyclopentenone products, were examined in this study. A synthetic protocol utilizing focused-microwave dielectric heating proved indispensable in the efficient synthesis of the PK cyclopentenone products. "π-Deficient" heteroaromatic substrates, e.g., 2-pyrones, and some "π-excessive" heteroaromatics such as 2- and 3-thiophene and 2-furan favor the β-position in the newly formed cyclopentenone ring. Other π-excessive heteroaromatics such as 2-pyrrole or 2-indole favor the α-position. A π-excessive 3-indole derivative gave a nearly equal mixture of regioisomers. The position of the nitrogen in pyridyl-containing alkyne substrates also affects the regiochemical outcome of the PK reaction. A 2-pyridyl alkyne, possessing a proximal nitrogen, influences the regioselectivity relative to a 4-pyridyl variant quite dramatically, favoring the β-position in the newly formed cyclopentenone ring. A 2-pyrimidylalkyne exhibits similar behavior to the 2-pyridylalkyne. Compounds that do not participate in PK reactions with norbornene include (2-phenylethynyl)imidazoles and the related benzimidazoles, which promote rapid decomposition of the in situ generated (μ(2)-alkyne)Co(2)(CO)(6) complexes. This stands in contrast with other nitrogen-containing heteroaromatics, e.g., pyrrole-, indole-, and pyrimidine-derived compounds, which effectively undergo PK reactions. Overall, the type of heteroaromatic group dramatically influences PK regioselectivity, which can in part be explained by rationalization of the current reaction mechanism, but not fully.

摘要

这项研究考察了在 Co(2)(CO)(8)介导下,空间位阻相当的(2-苯乙炔基)杂芳烃与降冰片烯的分子间 Pauson-Khand(PK)反应,生成环戊烯酮产物。利用聚焦微波介电热的合成方案对于高效合成 PK 环戊烯酮产物是必不可少的。“π-不足”的杂芳基底物,如 2-吡喃酮,以及一些“π-过量”的杂芳烃,如 2-和 3-噻吩以及 2-呋喃,有利于新形成的环戊烯酮环中的β位。其他“π-过量”的杂芳烃,如 2-吡咯或 2-吲哚,则有利于α位。一个“π-过量”的 3-吲哚衍生物几乎得到了区域异构体的等量混合物。吡啶基炔烃底物中氮的位置也会影响 PK 反应的区域化学结果。一个具有近端氮的 2-吡啶基炔烃相对于具有 4-吡啶基变体的区域选择性具有显著影响,有利于新形成的环戊烯酮环中的β位。一个 2-嘧啶基炔烃表现出与 2-吡啶基炔烃相似的行为。不与降冰片烯发生 PK 反应的化合物包括(2-苯乙炔基)咪唑和相关的苯并咪唑,它们会迅速促进原位生成的(μ(2)-炔基)Co(2)(CO)(6)配合物的分解。这与其他含氮杂芳烃形成鲜明对比,例如,吡咯、吲哚和嘧啶衍生的化合物,它们有效地进行 PK 反应。总的来说,杂芳基类型对 PK 区域选择性有显著影响,这部分可以通过对当前反应机理的合理化解释来解释,但并非完全如此。

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