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1,3-氯向乙烯基阳离子的迁移:氯乙炔的E-选择性金(I)催化二聚反应的实验与理论联合研究

1,3-Chlorine Shift to a Vinyl Cation: A Combined Experimental and Theoretical Investigation of the E-Selective Gold(I)-Catalyzed Dimerization of Chloroacetylenes.

作者信息

Kreuzahler Mathis, Daniels Alyssa, Wölper Christoph, Haberhauer Gebhard

机构信息

Institut für Organische Chemie , Universität Duisburg-Essen , Universitätsstraße 7 , D-45117 Essen , Germany.

出版信息

J Am Chem Soc. 2019 Jan 23;141(3):1337-1348. doi: 10.1021/jacs.8b11501. Epub 2019 Jan 8.

Abstract

Metal-catalyzed dimerization reactions of terminal acetylenes are well known in the literature. However, only a few examples of the dimerization of halogen-substituted acetylenes are described. The products of the latter metal-catalyzed dimerization are the branched head-to-tail enynes. The formation of the corresponding linear head-to-head enynes has not been reported yet. Herein, we demonstrate by means of quantum chemical methods and experiments that the head-to-head dimerization of chloroarylacetylenes can be achieved via mono gold catalysis. Under the optimized conditions, a clean and complete conversion of the starting materials is observed and the dimeric products are obtained up to 75% NMR yield. A mechanistic investigation of the dimerization reaction reveals that the branched head-to-tail vinyl cation is energetically more stable than the corresponding linear head-to-head cation. However, the latter can rearrange by an unusual 1,3-chlorine shift, resulting in the highly stereoselective formation of the trans product, which corresponds to the gold complex of the head-to-head E-enyne. The activation barrier for this rearrangement is extremely low (ca. 2 kcal/mol). As the mono gold-catalyzed dimerization can be conducted in a preparative scale, this simple synthesis of trans-1,2-dichloroenynes makes the gold(I)-catalyzed head-to-head dimerization of chloroarylacetylenes an attractive method en route to more complex conjugated enyne systems and their congeners.

摘要

末端乙炔的金属催化二聚反应在文献中是众所周知的。然而,关于卤代乙炔二聚反应的例子却很少被描述。后一种金属催化二聚反应的产物是支链头对头烯炔。相应的线性头对头烯炔的形成尚未见报道。在此,我们通过量子化学方法和实验证明,氯芳基乙炔的头对头二聚反应可以通过单金催化实现。在优化条件下,观察到起始原料的完全转化,二聚产物的核磁共振产率高达75%。对二聚反应的机理研究表明,支链头对头乙烯基阳离子在能量上比相应的线性头对头阳离子更稳定。然而,后者可以通过不寻常的1,3-氯迁移进行重排,导致反式产物的高度立体选择性形成,该产物对应于头对头E-烯炔的金配合物。这种重排的活化能垒极低(约2千卡/摩尔)。由于单金催化的二聚反应可以在制备规模上进行,这种简单的反式-1,2-二氯烯炔合成方法使得氯芳基乙炔的金(I)催化头对头二聚反应成为通往更复杂共轭烯炔体系及其同类物的一种有吸引力的方法。

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