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Z-Selective Cross-Metathesis and Homodimerization of 3E-1,3-Dienes: Reaction Optimization, Computational Analysis, and Synthetic Applications

机译:3E-1,3-二烯的Z选择性交叉复分解和均聚化:反应优化,计算分析和合成应用

摘要

Olefin metathesis reactions with 3E-1,3-dienes using Z-selective cyclometalated ruthenium benzylidene catalysts are described. In particular, a procedure for employing 3E-1,3-dienes in Z-selective homodimerization and cross-metathesis with terminal alkenes is detailed. The reaction takes advantage of the pronounced chemoselectivity of a recently reported ruthenium-based catalyst containing a cyclometalated NHC ligand for terminal alkenes in the presence of internal E-alkenes. A wide array of commonly encountered functional groups can be tolerated, and only a small excess (1.5 equiv) of the diene coupling partner is required to achieve high yields of the desired internal E,Z-diene cross-metathesis product. Computational studies have been performed to elucidate the reaction mechanism. The computations are consistent with a diene-first pathway. The reaction can be used to quickly assemble structurally complex targets. The power of this cross-metathesis reaction is demonstrated by the concise syntheses of two insect pheromones.
机译:描述了使用Z-选择性环金属化钌亚苄基催化剂与3E-1,3-二烯进行的烯烃复分解反应。特别地,详细描述了在Z-选择性均二聚和与末端烯烃的交叉复分解中使用3E-1,3-二烯的方法。该反应利用了最近报道的在内部E-烯烃存在下含环金属化NHC配体用于末端烯烃的钌基催化剂的显着化学选择性。可以容忍各种常见的官能团,仅需要少量过量(1.5当量)的二烯偶联伴侣即可实现所需内部E,Z-二烯交叉复分解产物的高收率。已经进行了计算研究以阐明反应机理。该计算与二烯优先路径一致。该反应可用于快速组装结构复杂的靶标。两种昆虫信息素的简洁合成证明了这种交叉复分解反应的能力。

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