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Synthesis and characterization of ruthenium (II) complexes and their applications to atom transfer radical addition reactions.

机译:钌(II)配合物的合成与表征及其在原子转移自由基加成反应中的应用。

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摘要

A series of mixed-phosphine ruthenium complexes of the type Cp'Ru(PR3)(PPh3)Cl, where Cp' = Cp*, Dp, Ind, Cp, Tp; PR3 = PTA or PMe3 have been synthesized by ligand exchange reactions with Cp'Ru(PPh3)2Cl, and characterized by multinuclear NMR spectroscopy and X-ray crystallography. We have explored the efficiency of these complexes as catalysts for the atom transfer radical addition (ATRA) of various chloro-substrates (CCl4, CHCl3 , rho-TsCl, CCl3CO2Et, and CH2ClCO 2Et) to styrene in the presence of AIBN as a radical source. For comparison purposes, we also investigated the activity of Cp'Ru(PPh3) 2Cl and Cp'Ru(PTA)2Cl complexes towards ATRA. In general, these complexes efficiently catalyzed the radical addition reactions affording the 1:1 adduct in almost quantitative yields. Catalyst performance was found to depend mainly on the electron-donating ability of the Cp' ancillary ligands and on the nature of the phosphines. Among the ruthenium (II) complexes studied Cp*Ru(PTA)(PPh3)Cl and Cp*Ru(PMe3)(PPh3)Cl were very active at 60° C with TOFs of 1060 h-1 and 933 h-1, respectively; Cp*Ru(PPh3)2Cl was the most active for the addition of CCl4 to styrene with a TOF >960 h-1 at room temperature. The reactivity decreased significantly upon substitution of the labile PPh3 with stronger binding phosphines such as PTA or PMe3 (Cp'Ru(PPh3)2Cl > Cp'Ru(PR 3)(PPh3)Cl > Cp'Ru(PTA)2Cl). Based on the Cp' ancillary ligand, the order of reactivity was found to be: Cp*Ru DpRu > IndRu > CpRu > TpRu.;The activity of Cp*Ru(PTA)(PPh3)Cl, Cp*Ru(PMe3)(PPh 3)Cl, and Cp*Ru(PPh3)2Cl was further explored for the addition of CCl4 to more challenging olefins. Both terminal and internal olefins were utilized for the addition reactions. All the three complexes exhibited high reactivity towards CCl4 addition to terminal olefins. Total turnovers (TTO) in excess of 80,000 were obtained for the addition of CCl4 to hexene, making the Cp* complexes the most active and robust catalysts for ATRA reported to date. Contrary to this, the internal olefins were less prone to CCl4 addition whatever the catalytic system may be. These results indicate that the rate of the reaction depends not only on the type of catalyst, but also on the nature of substrate employed.;The synthesis and characterization of the air-sensitive hydride, IndRu(PTA)(PPh 3)H, is also described. The rate of H/D exchange of the hydride complex was found to be very low (t1/2 ∼ 5.5 d). We explored the activity of IndRu(PTA)(PPh3)Cl for the selective transfer hydrogenation of alpha,beta-unsaturated carbonyl compounds in aqueous-biphasic media. Electrochemical studies on some of the Cp'Ru(PR3)(PPh3)Cl complexes in dichloromethane are also reported.
机译:Cp'Ru(PR3)(PPh3)Cl类型的一系列混合膦钌配合物,其中Cp'= Cp *,Dp,Ind,Cp,Tp; PR3 = PTA或PMe3已通过与Cp'Ru(PPh3)2Cl进行配体交换反应合成,并通过多核NMR光谱学和X射线晶体学表征。我们已经研究了这些络合物在AIBN作为自由基源的情况下作为各种氯基质(CCl4,CHCl3,rho-TsCl,CCl3CO2Et和CH2ClCO 2Et)原子转移自由基加成(ATRA)催化剂的效率。为了进行比较,我们还研究了Cp'Ru(PPh3)2Cl和Cp'Ru(PTA)2Cl复合物对ATRA的活性。通常,这些络合物有效地催化自由基加成反应,以几乎定量的产率提供1:1的加合物。发现催化剂性能主要取决于Cp'辅助配体的供电子能力和膦的性质。在研究的钌(II)配合物中,Cp * Ru(PTA)(PPh3)Cl和Cp * Ru(PMe3)(PPh3)Cl在60°C时具有很高的活性,TOF分别为1060 h-1和933 h-1。 ;在室温下,TOP> 960 h-1时,Cp * Ru(PPh3)2Cl对于将CCl4加到苯乙烯中的活性最高。当用更强结合力的膦(例如PTA或PMe3)取代不稳定的PPh3时,反应活性显着降低(Cp'Ru(PPh3)2Cl> Cp'Ru(PR 3)(PPh3)Cl> Cp'Ru(PTA)2Cl)。基于Cp'辅助配体,反应顺序为:Cp * Ru DpRu> IndRu> CpRu> TpRu。; Cp * Ru(PTA)(PPh3)Cl,Cp * Ru(PMe3) )(PPh 3)Cl和Cp * Ru(PPh3)2Cl进一步用于将CCl4加到更具挑战性的烯烃中。末端烯烃和内部烯烃都用于加成反应。所有这三种络合物都显示出对CCl4加成末端烯烃的高反应活性。向己烯中添加CCl4可获得的总营业额(TTO)超过80,000,这使Cp *络合物成为迄今为止报道的ATRA活性最高,最耐用的催化剂。与此相反,无论催化体系是什么,内烯烃都不太容易加入CCl4。这些结果表明,反应速率不仅取决于催化剂的类型,还取决于所使用的底物的性质。空气敏感性氢化物IndRu(PTA)(PPh 3)H的合成与表征为也有描述。发现氢化物配合物的H / D交换速率非常低(t1 / 2〜5.5d)。我们探索了IndRu(PTA)(PPh3)Cl在水-双相介质中对α,β-不饱和羰基化合物进行选择性转移氢化的活性。还报道了一些Cp'Ru(PR3)(PPh3)Cl络合物在二氯甲烷中的电化学研究。

著录项

  • 作者

    Nair, Radhika P.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 196 p.
  • 总页数 196
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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