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利用和理解钌-N-杂环卡宾复分解催化剂对环状烯烃的乙叉化反应生成α,ω-二烯的选择性。

Exploiting and Understanding the Selectivity of Ru-N-Heterocyclic Carbene Metathesis Catalysts for the Ethenolysis of Cyclic Olefins to α,ω-Dienes.

机构信息

Department of Chemistry and Applied Biosciences, ETH Zürich , Vladimir-Prelog-Weg 2, CH-8093 Zürich, Switzerland.

Department of Chemistry, University of Utah , 315 South 1400 East, Salt Lake City, Utah 84112, United States.

出版信息

J Am Chem Soc. 2017 Sep 20;139(37):13117-13125. doi: 10.1021/jacs.7b06947. Epub 2017 Sep 11.

Abstract

A library of 29 homologous Ru-based olefin metathesis catalysts has been tested for ethenolysis of cyclic olefins toward the goal of selectively forming α,ω-diene using cis-cyclooctene as a prototypical substrate. Dissymmetry at the N-heterocyclic carbene (NHC) ligand was identified as a key parameter for controlling the selectivity. The best-performing catalyst bearing an N-CF group significantly outperformed the benchmark second-generation Grubbs catalyst in the ethenolysis of cis-cyclooctene. Application of this optimal catalyst to the ethenolysis of various norbornenes allows the efficient synthesis of valuable diene intermediates in good yields. The observed ligand effect trends could be rationalized through univariate and multivariate parameter analysis involving steric and electronic descriptors of the NHC ligand in the form of the buried volume and the Se NMR chemical shift, in particular the σ component of the shielding tensor of [Se(NHC)] model compounds, respectively. Natural chemical shift analysis of this chemical shielding tensor shows that σ probes the π-acceptor property of the NHC ligand, the essential electronic parameter that drives the relative rate of degenerate metathesis and selectivity in ethenolysis with catalysts bearing dissymmetric NHC ligands.

摘要

已经对 29 种同源 Ru 基烯烃复分解催化剂库进行了测试,旨在通过使用顺式-环辛烯作为典型底物,选择性形成α,ω-二烯,进行环烯烃的易位聚合反应。在 N-杂环卡宾(NHC)配体中的不对称性被确定为控制选择性的关键参数。具有 N-CF 基团的性能最佳的催化剂在顺式-环辛烯的易位聚合反应中明显优于基准第二代 Grubbs 催化剂。将这种最佳催化剂应用于各种降冰片烯的易位聚合反应,可以以良好的收率高效合成有价值的二烯中间体。通过涉及 NHC 配体的立体和电子描述符的单变量和多变量参数分析,可以合理地解释观察到的配体效应趋势,这些描述符以 NHC 配体的埋置体积和硒 NMR 化学位移的形式表示,特别是屏蔽张量的σ分量[Se(NHC)]模型化合物。该化学屏蔽张量的自然化学位移分析表明,σ 探针 NHC 配体的π-受体性质,这是驱动具有不对称 NHC 配体的催化剂中退化复分解反应和易位聚合反应选择性的相对速率的必要电子参数。

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