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关于推拉稳定化羰基叶立德环加成行为的理论见解。

Theoretical Insights Regarding the Cycloaddition Behavior of Push-Pull Stabilized Carbonyl Ylides.

作者信息

Weingarten M. David, Prein Michael, Price Alan T., Snyder James P., Padwa Albert

机构信息

Department of Chemistry, Emory University, Atlanta, Georgia 30322.

出版信息

J Org Chem. 1997 Apr 4;62(7):2001-2010. doi: 10.1021/jo962184z.

Abstract

A series of diazoamido keto esters were prepared by the reaction of N-substituted 3-carbethoxy-2-piperidone with n-butylmagnesium chloride followed by the addition of ethyl 2-diazomalonyl chloride. Treatment of these diazo amides with rhodium(II) acetate afforded transient push-pull carbonyl ylide dipoles which could be readily trapped with electron deficient dipolarophiles. All attempts to induce the dipolar cycloaddition to occur across tethered alkenyl pi-bonds failed to give internal cycloadducts. However, placing a sp(2) center on the tethered side chain was found to result in the formation of a tricyclic adduct in 95% yield. The stereochemistry of the cycloadduct was firmly established by an X-ray crystallographic study and occurred endo with respect to the amido carbonyl ylide dipole. A detailed computational study was undertaken to provide better insight into the factors that influence the intramolecular cycloaddition process. The calculations indicate that a severe cross-ring 1,3-diaxial interaction caused by the bridgehead methyl group promotes a boat or twist-boat conformation in the piperidine ring fused to the newly forming one. The presence of a carbonyl group in the dipolarophile tether helps to relieve the steric congestion by virtue of favoring a second boat in the latter ring. Without the C=O group, both nascent and piperidine rings are in the chair conformation at lowest energy, and the reaction barrier is disadvantaged by 5.6 kcal/mol, allowing other competing processes to intervene.

摘要

通过N-取代的3-乙氧羰基-2-哌啶酮与正丁基氯化镁反应,随后加入2-重氮丙二酸乙酯,制备了一系列重氮酰胺基酮酯。用乙酸铑(II)处理这些重氮酰胺,得到瞬态推挽式羰基叶立德偶极子,它们很容易被缺电子的亲偶极体捕获。所有试图使偶极环加成反应通过连接的烯基π键发生的尝试都未能得到内型环加成产物。然而,发现在连接的侧链上放置一个sp(2)中心会导致以95%的产率形成三环加合物。通过X射线晶体学研究确定了环加成产物的立体化学,且相对于酰胺羰基叶立德偶极子呈内型。进行了详细的计算研究,以更好地了解影响分子内环加成过程的因素。计算表明,桥头甲基引起的严重跨环1,3-二轴相互作用促进了与新形成的哌啶环稠合的哌啶环中的船式或扭船式构象。偶极体连接链中羰基的存在有助于通过有利于后一个环中的第二个船式构象来缓解空间拥挤。没有C=O基团时,新生环和哌啶环在最低能量下均处于椅式构象,反应势垒不利5.6 kcal/mol,从而允许其他竞争过程介入。

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