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在非极性溶剂中使用分子氧进行氧化环化反应以及对氧钯化立体化学的研究。

Oxidative cyclizations in a nonpolar solvent using molecular oxygen and studies on the stereochemistry of oxypalladation.

作者信息

Trend Raissa M, Ramtohul Yeeman K, Stoltz Brian M

机构信息

The Arnold and Mabel Beckman Laboratories of Chemical Synthesis, Division of Chemistry and Chemical Engineering, California Institute of Technology, 1200 East California Boulevard, MC 164-30, Pasadena, California 91125, USA.

出版信息

J Am Chem Soc. 2005 Dec 21;127(50):17778-88. doi: 10.1021/ja055534k.

Abstract

Oxidative cyclizations of a variety of heteroatom nucleophiles onto unactivated olefins are catalyzed by palladium(II) and pyridine in the presence of molecular oxygen as the sole stoichiometric oxidant in a nonpolar solvent (toluene). Reactivity studies of a number of N-ligated palladium complexes show that chelating ligands slow the reaction. Nearly identical conditions are applicable to five different types of nucleophiles: phenols, primary alcohols, carboxylic acids, a vinylogous acid, and amides. Electron-rich phenols are excellent substrates, and multiple olefin substitution patterns are tolerated. Primary alcohols undergo oxidative cyclization without significant oxidation to the aldehyde, a fact that illustrates the range of reactivity available from various Pd(II) salts under differing conditions. Alcohols can form both fused and spirocyclic ring systems, depending on the position of the olefin relative to the tethered alcohol; the same is true of the acid derivatives. The racemic conditions served as a platform for the development of an enantioselective reaction. Experiments with stereospecifically deuterated primary alcohol substrates rule out a "Wacker-type" mechanism involving anti oxypalladation and suggest that the reaction proceeds by syn oxypalladation for both mono- and bidentate ligands. In contrast, cyclizations of deuterium-labeled carboxylic acid substrates undergo anti oxypalladation.

摘要

在非极性溶剂(甲苯)中,以分子氧作为唯一化学计量氧化剂的情况下,钯(II)和吡啶可催化多种杂原子亲核试剂与未活化烯烃发生氧化环化反应。对多种氮配位钯配合物的反应活性研究表明,螯合配体会使反应减慢。几乎相同的条件适用于五种不同类型的亲核试剂:酚类、伯醇、羧酸、烯醇酸和酰胺。富电子酚是优良的底物,并且能耐受多种烯烃取代模式。伯醇发生氧化环化反应时不会显著氧化为醛,这一事实说明了在不同条件下各种钯(II)盐所具有的反应活性范围。醇类可以形成稠环和螺环体系,这取决于烯烃相对于连接的醇的位置;酸衍生物也是如此。外消旋条件为对映选择性反应的开发提供了一个平台。用立体定向氘代伯醇底物进行的实验排除了涉及反式氧钯化的“瓦克型”机理,并表明对于单齿和双齿配体,反应均通过顺式氧钯化进行。相比之下,氘标记的羧酸底物的环化反应则发生反式氧钯化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa52/2585987/395e87c0dbc1/nihms63208f1.jpg

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