Suppr超能文献

通过四(三甲基硅基)硅烷(TTMSS)和己硫醇对氮杂烯炔进行环化自由基羰基化反应生成α-硅基和硫亚甲基内酰胺。关于E/Z立体选择性的见解。

Cyclizative radical carbonylations of azaenynes by TTMSS and hexanethiol leading to alpha-silyl- and thiomethylene lactams. Insights into the E/Z stereoselectivities.

作者信息

Tojino Mami, Otsuka Noboru, Fukuyama Takahide, Matsubara Hiroshi, Schiesser Carl H, Kuriyama Hiroki, Miyazato Hironari, Minakata Satoshi, Komatsu Mitsuo, Ryu Ilhyong

机构信息

Department of Chemistry, Faculty of Arts and Sciences, Osaka Prefecture University, Sakai, Osaka 599-8531, Japan.

出版信息

Org Biomol Chem. 2003 Dec 7;1(23):4262-7. doi: 10.1039/b309944j. Epub 2003 Oct 21.

Abstract

Free-radical mediated cyclizative carbonylations of azaenynes were carried out using TTMSS as a radical mediator to compare the efficiency and the stereochemistry with those using tributyltin hydride. Using a substrate concentration of 0.1 M, the reactions gave good yields of alpha-silylmethylene lactams having four to seven-membered rings. The observed E-diastereoselectivity of the resulting vinylsilane moiety is in sharp contrast to the Z-selectivity observed during the analogous carbonylation using tributyltin hydride. When hexanethiol was used as the radical mediator, alpha-thiomethylene lactams were formed with E-favoring stereoselectivity again. Ab initio and DFT molecular orbital calculations on the stability of E and Z products were carried out for a set of five-membered methylene lactams bearing SnH3, SiH3, and SMe groups. The distinct thermodynamic preference for the Z-isomer was only predicted for the Sn-bearing lactam. A steric effect due to the bulky (TMS)3Si group is proposed for the E-selectivity observed in the TTMSS-mediated reaction.

摘要

使用TTMSS作为自由基介导剂进行氮杂烯炔的自由基介导环化羰基化反应,以与使用三丁基氢化锡的反应的效率和立体化学进行比较。在底物浓度为0.1 M的情况下,反应生成了具有四至七元环的α-硅亚甲基内酰胺,产率良好。所得乙烯基硅烷部分观察到的E-非对映选择性与使用三丁基氢化锡进行类似羰基化反应期间观察到的Z-选择性形成鲜明对比。当使用己硫醇作为自由基介导剂时,再次形成具有E-偏向立体选择性的α-硫亚甲基内酰胺。对一组带有SnH3、SiH3和SMe基团的五元亚甲基内酰胺的E和Z产物的稳定性进行了从头算和DFT分子轨道计算。仅预测含Sn内酰胺对Z-异构体有明显的热力学偏好。对于在TTMSS介导的反应中观察到的E-选择性,提出了由于庞大的(TMS)3Si基团引起的空间效应。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验