Suppr超能文献

一种明确定义的(POCOP)Rh 催化剂,用于芳基卤化物与硫醇的偶联。

A well-defined (POCOP)Rh catalyst for the coupling of aryl halides with thiols.

机构信息

Department of Chemistry, Texas A&M University , College Station, Texas 77842, United States.

出版信息

J Am Chem Soc. 2014 Oct 22;136(42):14772-9. doi: 10.1021/ja505576g. Epub 2014 Oct 10.

Abstract

This article describes a well-defined pincer-Rh catalyst for C-S cross-coupling reactions. (POCOP)Rh(H)(Cl) serves as an active precatalyst for the coupling of aryl chlorides and bromides with aryl and alkyl thiols under reasonable conditions (3% mol cat., 110 °C, 2-24 h, >90% yield). For select substrates, >90% yields were obtained with catalyst loading as low as 0.1%. Key mechanistic intermediates have been isolated and fully characterized, including (POCOP)Rh(Ph)(SPh) (6a) and (POCOP)Rh(SPh2) (6b). The aryl/bis(phosphinite) (POCOP)Rh system has been shown to favor aryl thiolate reductive elimination at elevated temperatures and in some cases at room temperature, compared with the analogous diarylamido/bis(phosphine) (PNP)Rh pincer system. Concerted reductive elimination has been studied with 6a directly and in the presence of aryl bromide and aryl chloride traps. This investigation demonstrates a clear rate dependence on aryl chloride concentration during catalysis, a dependence that is absent when using aryl bromides. The rate of catalysis is dramatically reduced or brought to zero for ortho-tolyl halides, which can be traced to slower C-S coupling and slower carbon-halogen oxidative addition for ortho-substituted aryls. The influence of the sterics in the thiol component is less straightforward. The S-H oxidative addition product (POCOP)Rh(H)(SPh) (16) has been fully characterized and its reactivity has been examined, resulting in the isolation of the sodium-thiolate adduct (POCOP)Rh(NaSPh) (19). The solid-state structure of 19 shows Na interactions not only with sulfur, but also with a neighboring Rh and the chelating aryl carbon of the pincer framework. The reactivity of 16 and 19 indicates that these potential side products should not hinder catalysis.

摘要

本文描述了一种用于 C-S 交叉偶联反应的明确的钳子型 Rh 催化剂。(POCOP)Rh(H)(Cl) 作为一种活性前催化剂,可在合理条件下(3% mol cat.,110°C,2-24 h,>90%产率)将芳基氯和溴与芳基和烷基硫醇偶联。对于一些选择性底物,催化剂负载量低至 0.1%时即可获得>90%的产率。关键的反应中间体已被分离并进行了充分的表征,包括(POCOP)Rh(Ph)(SPh) (6a) 和 (POCOP)Rh(SPh2) (6b)。与类似的二芳基酰胺/双(膦) (PNP)Rh 钳子型体系相比,芳基/双(膦酸酯) (POCOP)Rh 体系在高温下和某些情况下在室温下有利于芳基硫醇的还原消除。直接用 6a 以及芳基溴化物和芳基氯化物捕获物研究了协同还原消除。这项研究表明,在催化过程中,芳基氯化物浓度对反应速率有明显的依赖性,而使用芳基溴化物时则不存在这种依赖性。邻甲苯基卤化物的催化速率显著降低或降至零,这可以追溯到邻位取代的芳基 C-S 偶联反应和碳-卤键的氧化加成反应较慢。硫醇部分的立体位阻的影响则不那么直接。已对 S-H 氧化加成产物(POCOP)Rh(H)(SPh) (16) 进行了充分的表征,并研究了其反应性,得到了钠盐硫醇加合物(POCOP)Rh(NaSPh) (19)。19 的固态结构表明,Na 不仅与硫相互作用,还与相邻的 Rh 和钳子型骨架的螯合芳基碳相互作用。16 和 19 的反应性表明,这些潜在的副产物不应阻碍催化反应。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验