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Oxime Palladacycle Catalyzed Carbonylative Sonogashira Cross-Coupling with High Turnovers in PEG as a Benign and Recyclable Solvent System

机译:Oxime Palladacycle催化羰基sonogashira交叉耦合,在PEG中作为良性和可回收溶剂系统的高失误

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摘要

Oxime palladacycles- di-μ-chlorobis [5-chloro-2-[(4- chlorophe- nyl)(hydroxyimino-κN) methyl] phenyl-κC] palladium (II) dimer (1) and di-μ-chlorobis [5-hydroxy-2-[1-(hydroxyimino-κN) ethyl] phenyl-κC] palladium (II) dimer (2) provide a phosphine free approach for the synthesis of ynones at low palladium loadings (10~(-5) mol%) thus resulting in catalytic turnover numbers (TONs) and turnover frequencies (TOFs) of the order of 10~6 . Oxime palladacycle 1 shows TON 587 times and TOF 331 times higher than the best palladium catalyst reported in the literature for the carbonylative cross-coupling between 4-iodoanisole and phenylacetylene as a model reaction. The use of poly (ethylene glycol) as an environmentally benign solvent system allows the recyclability of the oxime palladacycle at low palladium loading up to four times. Further, the oxime palladacycles are advanta- geous in effecting higher conversion and selectivity at low palladium loadings as compared to conventional palladium precursors- Pd (OAc)_2 and PdCl_2(PPh_3)_2
机译:氧摄氏palladacycles- di-μ-氯贝斯[5-氯-2 - [((4-氯尼尼基)(羟基酰基)甲基]甲基]苯基-κC] palladium(ii)二聚体(1)和二氯[5] -HYDROXY-2- [1-(羟基酰基-κN)乙基]苯基-κC]钯(II)二聚体(2)为低钯负荷下的Ynones合成提供了无磷酸的方法(10〜(-5)mol%) )因此导致10〜6阶的催化周转数(吨)和周转频率(TOF)。氧摄影剂1显示了587次,TOF比在文献中报道的最佳钯催化剂高331倍,用于4-碘烷糖和苯基乙烯之间的羰基交叉偶联,作为模型反应。将聚(乙二醇)用作环境良性溶剂系统的使用允许在低钯加载下的氧电palladacycle的可回收性,最多四倍。此外,与常规钯前体 - PD(OAC)_2和PDCL_2(PPH_3)_2相比

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