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发展一种通用的、顺序的、环化复分解/分子内交叉偶联反应,用于合成多不饱和大环内酯。

Development of a general, sequential, ring-closing metathesis/intramolecular cross-coupling reaction for the synthesis of polyunsaturated macrolactones.

机构信息

Roger Adams Laboratory, Department of Chemistry, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

J Am Chem Soc. 2010 Aug 25;132(33):11768-78. doi: 10.1021/ja1047363.

Abstract

A general strategy for the construction of macrocyclic lactones containing conjugated Z,Z-1,3-diene subunits is described. The centerpiece of the strategy is a sequential ring-closing metathesis (RCM) that forms an unsaturated siloxane ring, followed by an intramolecular cross-coupling reaction with a pendant alkenyl iodide. A highly modular assembly of the various precursors allowed the preparation of unsaturated macrolactones containing 11-, 12-, 13-, and 14-membered rings. Although the RCM process proceeded uneventfully, the intramolecular cross-coupling required extensive optimization of palladium source, solvent, fluoride source, and particularly fluoride hydration level. Under the optimal conditions (including syringe pump high dilution), the macrolactones were produced in 53-78% yield as single stereoisomers. A benzo-fused 12-membered-ring macrolactone containing an E,Z-1,3-diene unit was also prepared by the same general strategy. The E-2-styryl iodide was prepared by a novel Heck reaction of an aryl nonaflate with vinyltrimethylsilane followed by iododesilylation with ICl.

摘要

描述了一种构建含有共轭 Z,Z-1,3-二烯亚基的大环内酯的通用策略。该策略的核心是一个顺序的闭环复分解(RCM),形成一个不饱和硅氧烷环,然后与一个挂接的烯基碘化物进行分子内交叉偶联反应。通过各种前体的高度模块化组装,可以制备含有 11、12、13 和 14 个环的不饱和大环内酯。尽管 RCM 过程进行得很顺利,但分子内交叉偶联需要对钯源、溶剂、氟源,特别是氟化物水合水平进行广泛的优化。在最佳条件下(包括注射器泵高稀释),大环内酯以单一立体异构体的形式以 53-78%的收率生成。通过相同的通用策略,还制备了含有 E,Z-1,3-二烯单元的苯并稠合 12 元环大环内酯。E-2-苯乙烯基碘化物是通过芳基非氟化物与乙烯基三甲基硅烷的新型 Heck 反应制备的,然后用 ICl 进行碘代硅烷化。

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