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A Versatile and Highly Z-Selective Olefin Metathesis Ruthenium Catalyst Based on a Readily Accessible N-Heterocyclic Carbene

机译:基于易于接近的 N - 烯烃卡贝,一种多功能和高度的和高度的烯烃复分解钌催化剂

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摘要

A ruthenium catalyst for Z -selective olefin metathesis has been synthesized from a readily accessible N -heterocyclic carbene (NHC) ligand that is prepared using an efficient, practical, and scalable multicomponent synthesis. The desired ruthenium complex with cyclometalated NHC ligand is obtained by means of selective C(sp~(3))-H activation at the adamantyl fragment and X-ray diffraction analysis unambiguously confirmed the structure of the precatalyst. The catalyst demonstrated attractive catalytic performance in self- and cross-metathesis at low catalyst loading to afford the desired internal olefins with high conversion and very high Z -selectivity (up to >99%). The versatility of the chelated catalyst is illustrated by the high cis -selectivity (up to >98%) and high tacticity control (up to >98% syndiotactic) achieved in ring-opening polymerization, allowing for the production of highly microstructurally controlled norbornene-, norbornadiene-, and cyclopropene-derived polymers.
机译:用于 Z-Selective烯烃复分解的钌催化剂是由使用有效,实用和可扩展的多组分合成制备的易于接近的 N-答正常的Carbene(NHC)配体合成。通过选择性C(SP〜(3))-H激活在金刚烷基片段和X射线衍射分析下明确证实了预催化剂的结构,得到所需的钌络合物。催化剂在低催化剂负载下在自我和交叉复位方面表现出具有吸引性的催化性能,得到具有高转化率的所需内烯烃,非常高的 Z-选择性(高达> 99%)。螯合催化剂的多功能性通过在开环聚合中实现的高 CIS-SELECTIVE(高达> 98%)和高术术控制(高达> 98%的同性恋)来说明,允许生产高度微观结构控制的降冰片烯 - ,降冰片二烯 - 和环丙烯衍生的聚合物。

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