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硫脲-伯胺催化纳扎罗环化反应立体选择性的起源。

Origins of the Stereoselectivity in a Thiourea-Primary Amine-Catalyzed Nazarov Cyclization.

机构信息

Department of Chemistry and Biochemistry, University of California , Los Angeles, California 90095-1569, United States.

Department of Chemistry, University of Hawaii at Manoa , Honolulu, Hawaii 96822, United States.

出版信息

J Am Chem Soc. 2015 Oct 14;137(40):13191-9. doi: 10.1021/jacs.5b08969. Epub 2015 Oct 1.

Abstract

The origins of stereoselectivity of the Nazarov reactions of α-hydroxydivinylketones catalyzed by a vicinal thiourea-primary amine first reported by Tius have been explored with density functional theory. The electrocyclization transition structures in which the thiourea group of the catalyst donates two hydrogen bonds to the keto carbonyl group of the Nazarov reactant and the primary amine accepts a hydrogen bond from the hydroxyl group of the reactant have been modeled. The enantiomeric Nazarov transition structures, which are conventionally described by the absolute sense of conrotation of the dienone termini ("clockwise" or "counterclockwise") in the literature, are nonplanar and adopt helically chiral conformations. The interactions of these helical electrocyclization transition structures with the chiral catalyst are studied in detail. The organocatalyst is found to employ a combination of hydrogen bonding and steric effects to achieve helical recognition of the Nazarov transition state.

摘要

蒂乌斯首次报道的手性亚氨基二烯酮的 Nazarov 反应的立体选择性起源已通过密度泛函理论进行了研究。已对催化剂中的硫脲基团向 Nazarov 反应物的酮羰基提供两个氢键以及反应物的羟基与伯胺接受氢键的电环化过渡态结构进行了建模。文献中惯用的对映 Nazarov 过渡态结构通过二烯酮末端的绝对旋转方向(“顺时针”或“逆时针”)来描述,是非平面的,并采用螺旋手性构象。详细研究了这些螺旋电环化过渡态结构与手性催化剂的相互作用。研究发现,有机催化剂通过氢键和空间位阻效应的组合来实现对 Nazarov 过渡态的螺旋识别。

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