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动力学控制的闭环复分解反应:用于12元水杨酸大环内酯类化合物的潜在骨架的合成。

Kinetically controlled ring-closing metathesis: synthesis of a potential scaffold for 12-membered salicylic macrolides.

作者信息

Matsuya Yuji, Takayanagi Sho-ichi, Nemoto Hideo

机构信息

Graduate School of Medicine and Pharmaceutical Sciemces, University of Toyama, Toyama, Japan.

出版信息

Chemistry. 2008;14(17):5275-81. doi: 10.1002/chem.200800249.

Abstract

For the synthesis of a 12-membered salicylic macrolide scaffold, ring-closing metathesis (RCM) of a omega-diene compound was planned. The stereochemical outcome of the RCM reaction changed depending on the type of Ru catalyst that was used; a "first-generation" Grubbs catalyst produced exclusively the E isomer and "second-generation" catalysts provided a mixture of the E and Z isomers under kinetic control (not thermodynamic control). Considerations for the E/Z selectivity are described.

摘要

为了合成一个12元的水杨酸大环内酯支架,计划对一种ω-二烯化合物进行闭环复分解反应(RCM)。RCM反应的立体化学结果随所用钌催化剂的类型而变化;“第一代”格拉布催化剂只生成E异构体,而“第二代”催化剂在动力学控制(而非热力学控制)下提供E和Z异构体的混合物。文中描述了对E/Z选择性的考量。

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