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O-, N- 和 S- 螯合钌烯烃复分解催化剂电子效应的研究。

Studies on electronic effects in O-, N- and S-chelated ruthenium olefin-metathesis catalysts.

机构信息

Department of Chemistry, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.

出版信息

Chemistry. 2010 Aug 2;16(29):8726-37. doi: 10.1002/chem.200903457.

Abstract

A short overview on the structural design of the Hoveyda-Grubbs-type ruthenium initiators chelated through oxygen, nitrogen or sulfur atoms is presented. Our aim was to compare and contrast O-, N- and S-chelated ruthenium complexes to better understand the impact of electron-withdrawing and -donating substituents on the geometry and activity of the ruthenium complexes and to gain further insight into the trans-cis isomerisation process of the S-chelated complexes. To evaluate the different effects of chelating heteroatoms and to probe electronic effects on sulfur- and nitrogen-chelated latent catalysts, we synthesised a series of novel complexes. These catalysts were compared against two well-known oxygen-chelated initiators and a sulfoxide-chelated complex. The structures of the new complexes have been determined by single-crystal X-ray diffraction and analysed to search for correlations between the structural features and activity. The replacement of the oxygen-chelating atom by a sulfur or nitrogen atom resulted in catalysts that were inert at room temperature for typical ring-closing metathesis (RCM) and cross-metathesis reactions and showed catalytic activity only at higher temperatures. Furthermore, one nitrogen-chelated initiator demonstrated thermo-switchable behaviour in RCM reactions, similar to its sulfur-chelated counterparts.

摘要

本文简要概述了通过氧、氮或硫原子螯合的 Hoveyda-Grubbs 型钌引发剂的结构设计。我们的目的是比较和对比 O、N 和 S 螯合的钌配合物,以更好地理解吸电子和供电子取代基对钌配合物的几何形状和活性的影响,并深入了解 S 螯合配合物的顺反异构化过程。为了评估螯合杂原子的不同影响,并探究硫和氮螯合潜在催化剂的电子效应,我们合成了一系列新型配合物。这些催化剂与两种著名的氧螯合引发剂和一种亚砜螯合配合物进行了比较。新配合物的结构通过单晶 X 射线衍射确定,并进行了分析,以寻找结构特征与活性之间的相关性。用硫或氮原子取代氧螯合原子会导致配合物在室温下对典型的环封交酯(RCM)和交叉交酯反应惰性,只有在较高温度下才表现出催化活性。此外,一种氮螯合引发剂在 RCM 反应中表现出热开关行为,类似于其硫螯合类似物。

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