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重新利用π亲电环化/脱烷基化进行基团转移。

Repurposing π Electrophilic Cyclization/Dealkylation for Group Transfer.

机构信息

Department of Chemistry, University of California, Irvine, Irvine, CA, 02697, USA.

出版信息

Angew Chem Int Ed Engl. 2021 Dec 1;60(49):25776-25780. doi: 10.1002/anie.202112351. Epub 2021 Oct 29.

Abstract

A metal-free regio- and stereocontrolled group-transfer route toward the synthesis of trisubstituted alkenes is described. In this route, an electrophilic heterocyclization is followed by ring-opening group transfer. Specifically, a thioboration reaction transforms readily available alkynyl sulfide precursors into alkenyl boronates and alkenyl sulfides with defined regio- and stereochemistry in one synthetic step using commercially available B-chlorocatecholborane (ClBcat). Mechanistic studies identified the likely pathway as proceeding through zwitterionic rather than haloborated intermediates. The regio- and stereochemistry set in the initial cyclization step is preserved in the final acyclic alkene product, producing alkenes with up to four modifiable substituents with predictable regio- and stereochemistry. Downstream functionalization reactions showcase the versatility of the substitutions of the resulting alkenes. The mechanistic concept maps onto future reaction designs, given the abundance of known electrophiles and nucleophiles for electrophilic heterocyclization/dealkylation sequences.

摘要

描述了一种无金属的区域和立体控制的基团转移途径,用于合成三取代烯烃。在该途径中,通过亲电杂环化 followed by ring-opening group transfer。具体而言,使用商业上可获得的 B-氯邻苯二酚硼烷 (ClBcat),硫代硼化反应可在一步合成中从易得的炔基硫醚前体转化为具有确定区域和立体化学的烯基硼酸酯和烯基硫醚。机理研究表明,反应途径可能是通过两性离子中间体而不是卤代硼中间体进行的。在初始环化步骤中设定的区域和立体化学在最终的无环烯烃产物中得到保留,从而生成具有四个可修饰取代基的烯烃,具有可预测的区域和立体化学。下游官能团化反应展示了所得烯烃的多功能性。鉴于已知的亲电试剂和亲核试剂的丰富性,该机理概念适用于未来的反应设计,可用于亲电杂环化/脱烷基序列。

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