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伯格曼环化反应主题的变体:离子型戊二炔、庚二炔和辛二炔的电环化反应

Variations on the Bergman Cyclization Theme: Electrocyclizations of Ionic Penta-, Hepta-, and Octadiynes.

作者信息

Sirianni Dominic A, Song Xinli, Wairegi Salmika, Wang Evan B, Mendoza-Gomez Sebastian A, Luxon Adam, Zimmerley Maxwell, Nussdorf Ariana, Filatov Michael, Hoffmann Roald, Parish Carol A

机构信息

Department of Natural Sciences, Daemen University, Amherst, New York 14226, United States.

Department of Chemistry, University of Richmond, Richmond, Virginia 23173, United States.

出版信息

J Am Chem Soc. 2023 Oct 4;145(39):21408-21418. doi: 10.1021/jacs.3c06691. Epub 2023 Sep 25.

Abstract

The Bergman cyclization of ()-hexa-3-ene-1,5-diyne to form the aromatic diradical -benzyne has garnered attention as a potential antitumor agent due to its relatively low cyclization barrier and the stability of the resulting diradical. Here, we present a theoretical investigation of several ionic extensions of the fundamental Bergman cyclization: electrocyclizations of the penta-1,4-diyne anion, hepta-1,6-diyne cation, and octa-1,7-diyne dication, leveraging the spin-flip formulation of the equation-of-motion coupled cluster theory with single and double substitutions (EOM-SF-CCSD). Though the penta-1,4-diyne anion exhibits a large cyclization barrier of +66 kcal mol, cyclization of both the hepta-1,6-diyne cation and octa-1,7-diyne dication along a previously unreported triplet pathway requires relatively low energy. We also identified the presence of significant aromaticity in the triplet diradical products of these two cationic cyclizations.

摘要

()-己-3-烯-1,5-二炔的伯格曼环化反应生成芳香性双自由基-苯炔,由于其相对较低的环化势垒和所得双自由基的稳定性,作为一种潜在的抗肿瘤剂受到了关注。在此,我们利用含单双取代的运动方程耦合簇理论的自旋翻转公式(EOM-SF-CCSD),对基本伯格曼环化反应的几种离子扩展进行了理论研究:戊-1,4-二炔阴离子、庚-1,6-二炔阳离子和辛-1,7-二炔双阳离子的电环化反应。尽管戊-1,4-二炔阴离子表现出高达+66 kcal/mol的大环化势垒,但庚-1,6-二炔阳离子和辛-1,7-二炔双阳离子沿先前未报道的三线态途径的环化反应需要相对较低的能量。我们还在这两种阳离子环化反应的三线态双自由基产物中发现了显著的芳香性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34f0/10557144/bb1024fa8f9b/ja3c06691_0003.jpg

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