苯并噻吩
化学
烯二炔
炔烃
薗头偶联反应
复分解
吉布斯自由能
苯并呋喃
环闭合复分解
组合化学
立体化学
戒指(化学)
计算化学
有机化学
催化作用
钯
噻吩
聚合物
物理
量子力学
聚合
作者
Natalia A. Danilkina,Anna G. Lyapunova,Alexander F. Khlebnikov,Галина Л. Старова,Stefan Bräse,Ирина А. Балова
标识
DOI:10.1021/acs.joc.5b00409
摘要
The feasibility of ring-closing metathesis (RCM) as a synthetic entry to 10- and 11-membered dienediynes fused to a benzothiophene core was explored by experimental and theoretical investigations. An established sequence of iodocyclization of o-(buta-1,3-diynyl)thioanisoles followed by Sonogashira coupling to form diethynylbenzothiophenes was used to synthesize terminal benzothiophene-fused enediyne diolefins as substrates for RCM. Encountering an unexpected lack of reactivity of these substrates under standard RCM conditions, we applied DFT calculations to reveal that the underlying cause was a positive change in Gibbs free energy. The change in Gibbs free energy was also found to be positive for RCM of indole- and benzannulated terminal diolefins when affording smaller than 12-membered rings. We found that modification of the enediyne-diolefin substrate as the Co2(CO)6-alkyne complex allowed the target benzothiophene-fused 11-membered dienediyne to be obtained via RCM; the alkyne complexation strategy therefore provides one valid technique for overcoming challenges to macrocyclization of this kind.
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