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阐明不对称 Pd 催化 1,3-二酮酯的α-羟化反应中立体控制的起源。

Delineating origins of stereocontrol in asymmetric Pd-catalyzed alpha-hydroxylation of 1,3-ketoesters.

机构信息

Department of Chemistry, Imperial College London, Exhibition Road, South Kensington, London SW7 2AZ, United Kingdom.

出版信息

J Org Chem. 2010 May 7;75(9):3085-96. doi: 10.1021/jo1002906.

Abstract

Systematic studies of reaction conditions and subsequent optimization led to the identification of important parameters for stereoselectivity in the asymmetric alpha-hydroxylation reaction of 1,3-ketoesters. Enantioselectivities of up to 98% can be achieved for cyclic substrates and 88% for acyclic ketoesters. Subsequently, the combination of cyclic/acyclic ketoester, catalyst, and oxidant was found to have a profound effect on reaction rates and turnover-limiting steps. The stereochemistry of the reaction contradicts that observed for other similar electrophilic substitution reactions. This was rationalized by transition-state modeling, which revealed a number of cooperative weak interactions between oxidant, ligand, and counterion, together with C-H/pi interactions that cumulatively account for the unusual stereoselectivity.

摘要

系统的反应条件研究和后续的优化工作确定了 1,3-酮酯不对称α-羟化反应中对立体选择性有重要影响的参数。环状底物的对映选择性最高可达 98%,非环状酮酯的对映选择性最高可达 88%。随后,发现环状/非环状酮酯、催化剂和氧化剂的组合对反应速率和限速步骤有深远的影响。该反应的立体化学与其他类似亲电取代反应观察到的立体化学相反。通过过渡态建模对此进行了合理化,该模型揭示了氧化剂、配体和抗衡离子之间存在许多协同的弱相互作用,以及 C-H/π 相互作用,这些共同导致了不寻常的立体选择性。

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