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[(NHC)(NHC(ewg))RuCl(2)(CHPh)] 配合物与修饰后的 NHC(ewg)配体一起用于高效的闭环复分解反应,生成四取代烯烃。

[(NHC)(NHC(ewg))RuCl(2)(CHPh)] complexes with modified NHC(ewg) ligands for efficient ring-closing metathesis leading to tetrasubstituted olefins.

机构信息

Organometallic Chemistry and Homogeneous Catalysis, Petersenstr. 18, Technische Universität Darmstadt, 64287 Darmstadt, Germany.

出版信息

Chemistry. 2010 Apr 6;16(13):3983-93. doi: 10.1002/chem.200903275.

Abstract

Imidazolium salts (NHC(ewg)HCl) with electronically variable substituents in the 4,5-position (H,H or Cl,Cl or H,NO(2) or CN,CN) and sterically variable substituents in the 1,3-position (Me,Me or Et,Et or iPr,iPr or Me,iPr) were synthesized and converted into the respective [AgI(NHC)(ewg)] complexes. The reactions of [(NHC)RuCl(2)(CHPh)(py)(2)] with the [AgI(NHC(ewg))] complexes provide the respective [(NHC)(NHC(ewg))RuCl(2)(CHPh)] complexes in excellent yields. The catalytic activity of such complexes in ring-closing metathesis (RCM) reactions leading to tetrasubstituted olefins was studied. To obtain quantitative substrate conversion, catalyst loadings of 0.2-0.5 mol % at 80 degrees C in toluene are sufficient. The complex with the best catalytic activity in such RCM reactions and the fastest initiation rate has an NHC(ewg) group with 1,3-Me,iPr and 4,5-Cl,Cl substituents and can be synthesized in 95 % isolated yield from the ruthenium precursor. To learn which one of the two NHC ligands acts as the leaving group in olefin metathesis reactions two complexes, [(FL-NHC)(NHC(ewg))RuCl(2)(CHPh)] and [(FL-NHC(ewg))(NHC)RuCl(2)(CHPh)], with a dansyl fluorophore (FL)-tagged electron-rich NHC ligand (FL-NHC) and an electron-deficient NHC ligand (FL-NHC(ewg)) were prepared. The fluorescence of the dansyl fluorophore is quenched as long as it is in close vicinity to ruthenium, but increases strongly upon dissociation of the respective fluorophore-tagged ligand. In this manner, it was shown for ring-opening metathesis ploymerization (ROMP) reactions at room temperature that the NHC(ewg) ligand normally acts as the leaving group, whereas the other NHC ligand remains ligated to ruthenium.

摘要

具有电子可变取代基(4,5-位的 H,H 或 Cl,Cl 或 H,NO(2) 或 CN,CN)和空间可变取代基(1,3-位的 Me,Me 或 Et,Et 或 iPr,iPr 或 Me,iPr)的咪唑鎓盐(NHC(ewg)HCl)被合成,并转化为相应的 [AgI(NHC)(ewg)] 配合物。[(NHC)RuCl(2)(CHPh)(py)(2)] 与 [AgI(NHC(ewg))] 配合物的反应以优异的产率提供了相应的 [(NHC)(NHC(ewg))RuCl(2)(CHPh)] 配合物。此类配合物在闭环复分解(RCM)反应中形成四取代烯烃的催化活性进行了研究。为了获得定量的底物转化率,在甲苯中以 0.2-0.5 mol % 的催化剂负载量在 80 度下就足以进行反应。在这种 RCM 反应中具有最佳催化活性和最快引发速率的配合物具有 1,3-Me,iPr 和 4,5-Cl,Cl 取代基的 NHC(ewg) 基团,并且可以从钌前体以 95%的分离产率合成。为了了解两个 NHC 配体中的哪一个在烯烃复分解反应中作为离去基团,合成了两个具有丹磺酰基荧光团(FL)标记的富电子 NHC 配体(FL-NHC)和缺电子 NHC 配体(FL-NHC(ewg)) 的配合物 [(FL-NHC)(NHC(ewg))RuCl(2)(CHPh)] 和 [(FL-NHC(ewg))(NHC)RuCl(2)(CHPh)]。只要丹磺酰基荧光团与其紧密接近,丹磺酰基荧光团的荧光就会被猝灭,但一旦分离出各自的荧光团标记配体,荧光就会强烈增加。通过这种方式,在室温下的开环复分解聚合(ROMP)反应中表明,NHC(ewg) 配体通常作为离去基团,而另一个 NHC 配体仍然与钌配位。

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