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首页> 外文期刊>Journal of the American Chemical Society >Ruthenium(Ⅱ) Porphyrin Quinoid Carbene Complexes: Synthesis, Crystal Structure, and Reactivity toward Carbene Transfer and Hydrogen Atom Transfer Reactions
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Ruthenium(Ⅱ) Porphyrin Quinoid Carbene Complexes: Synthesis, Crystal Structure, and Reactivity toward Carbene Transfer and Hydrogen Atom Transfer Reactions

机译:钌(Ⅱ)卟啉奎单甲苯复合物:合成,晶体结构和对卡贝转移和氢原子转移反应的反应性

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摘要

Reactivity study of novel metal carbene complexes can offer new opportunities in catalytic carbene transfer reactions as well as in other synthetic protocols. Metal complexes with quinoid carbene (QC) ligands are assumed to be key intermediates in a variety of metal-catalyzed QC transfer reactions using diazo quinones, which demands development of the chemistry of QC transfer of well characterized metal-QC complexes. Herein we report the isolation and QC transfer of ruthenium porphyrins [Ru(Por)-(QC)] which contribute the first examples of (i) structurally characterized metal-QC complex (by X-ray crystallography) and (ii) isolated metal-QC complex that undergoes QC transfer reaction. The complexes [Ru(Por)(QC)] were prepared from reaction of [Ru(Por)(CO)] with diazo quinones and exhibited dual reactivity, i.e., hydrogen atom transfer (HAT) as well as QC transfer. The stoichiometric QC transfer reactions from these Ru-QC complexes to nitrosoarenes (ArNO) afforded nitrones in up to 90% yield, and the corresponding catalytic reactions were also developed. Both the stoichiometric and catalytic reactions for a series of QC ligands bearing electron-donating and-withdrawing substituents showed a reverse substituent effect on the QC transfer reactivity. Complexes [Ru(Por)(QC)] are also reactive toward C-H and X-H (X = N, 5) bonds and can catalyze aerobic oxidation of 1,4-cyclohexadiene; their stoichiometric HAT reactions with unsaturated hydrocarbons gave product yields of up to 88%. The unique dual reactivity and electronic feature of [Ru(Por)(QC)] were studied by spectroscopic means and density functional theory (DFT) calculations.
机译:新型金属卡宾配合物的反应性研究可以为催化切菜转移反应以及其他合成方案提供新的机会。假设具有奎单喹甲菜(QC)配体的金属配合物是使用Diazo Quinones的各种金属催化的QC转移反应中的关键中间体,这需要开发QC传输的QC良好的金属-QC复合物的化学。在本文中,我们报告了钌卟啉的分离和QC转移[Ru(por) - (qc)],其有助于(i)结构表征的金属-qc复合物(通过X射线晶体学)和(ii)分离的金属 - QC复合物经历QC转移反应。从[Ru(POR)(CO)]用DiaZo Quinone的反应制备复合物[Ru(por)(qc)]并表现出双重反应性,即氢原子转移(帽子)以及QC转移。将来自这些Ru-QC复合物的化学计量QC转移反应与亚硝基甲烷(ArNO)提供高达90%产率的硝基,并且还开发了相应的催化反应。用于一系列QC配体的化学计量和催化反应均轴承的电子和取代取代基对QC转移反应性的反向取代基效应。复合物[Ru(por)(qc)]对C-H和X-H(X = N,5)键也反应,并可催化1,4-环己二烯的有氧氧化;它们具有不饱和烃的化学计量帽反应使产品产率高达88%。通过光谱装置和密度泛函理论(DFT)计算研究了[Ru(POR)(QC)]的独特双重反应性和电子特征。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第22期|9027-9046|共20页
  • 作者单位

    Univ Hong Kong State Key Lab Synthet Chem Pokfulam Rd Hong Kong Peoples R China|Univ Hong Kong Dept Chem Pokfulam Rd Hong Kong Peoples R China;

    Univ Hong Kong State Key Lab Synthet Chem Pokfulam Rd Hong Kong Peoples R China|Univ Hong Kong Dept Chem Pokfulam Rd Hong Kong Peoples R China;

    Univ Hong Kong State Key Lab Synthet Chem Pokfulam Rd Hong Kong Peoples R China|Univ Hong Kong Dept Chem Pokfulam Rd Hong Kong Peoples R China;

    Univ Hong Kong State Key Lab Synthet Chem Pokfulam Rd Hong Kong Peoples R China|Univ Hong Kong Dept Chem Pokfulam Rd Hong Kong Peoples R China;

    Univ Hong Kong State Key Lab Synthet Chem Pokfulam Rd Hong Kong Peoples R China|Univ Hong Kong Dept Chem Pokfulam Rd Hong Kong Peoples R China;

    Univ Hong Kong State Key Lab Synthet Chem Pokfulam Rd Hong Kong Peoples R China|Univ Hong Kong Dept Chem Pokfulam Rd Hong Kong Peoples R China;

    Univ Hong Kong State Key Lab Synthet Chem Pokfulam Rd Hong Kong Peoples R China|Univ Hong Kong Dept Chem Pokfulam Rd Hong Kong Peoples R China;

    Univ Hong Kong State Key Lab Synthet Chem Pokfulam Rd Hong Kong Peoples R China|Univ Hong Kong Dept Chem Pokfulam Rd Hong Kong Peoples R China|HKU Shenzhen Inst Res & Innovat Shenzhen Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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