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首页> 外文期刊>Chemistry: A European journal >Synthesis and Characterization of Mononuclear Ruthenium(III) Pyridylamine Complexes and Mechanistic Insights into Their Catalytic Alkane Functionalization with m-Chloroperbenzoic Acid
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Synthesis and Characterization of Mononuclear Ruthenium(III) Pyridylamine Complexes and Mechanistic Insights into Their Catalytic Alkane Functionalization with m-Chloroperbenzoic Acid

机译:单核钌(III)吡啶基胺配合物的合成与表征及M-氯苯甲酸催化烷烃官能化的机械洞察

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A series of mononuclear Ru~(III) complexes [RuCl2(L)]~+, where L is tris(2-pyridylmethyl)amine (TPA) or one of four TPA derivatives as tetra-dentate ligand, were prepared and characterized by spectroscopic methods, X-ray crystallography, and electrochemical measurements. The geometry of a Ru~(III) complex having a non-threefold-symmetric TPA ligand bearing one dimethylnicotinamide moiety was determined to show that the nicotine moiety resides trans to a pyridine group, but not to the chlorido ligand. The substituents of the TPA ligands were shown to regulate the redox potential of the ruthenium center, as indicated by a linear Hammett plot in therange of 200 mV for Ru~(III)/Ru~(IV) couples with a relatively large rho value (+ 0.150). These complexes act as effective catalysts for alkane functionalization in acetonitrile with m-chloroper-benzoic acid (mCPBA) as terminal oxidant at room temperature. They exhibited fairly good reactivity for oxidation of cyclohexane (C-H bond energy 94 kcal mol~(-1)), and the reactivity can be altered significantly by the electronic effects of substituents on TPA ligands in terms of initial rates and turn-over numbers. Catalytic oxygenation of cyclohexane by a Ru~(III) complex with ~(16)O-mCPBA in the presence of H_2~(18)O gave ~(18)O-labeled cyclohexanol with 100% inclusion of the ~(18)O atom from the water molecule. Resonance Raman spectra under catalytic conditions without the substrate indicate formation of a Ru~(IV)=O intermediate with lower bonding energy. Kinetic isotope effects (KIEs) in the oxidation of cyclohexane suggest that hydrogen abstraction is the rate-determining step and the KIE values depend on the substituents of the TPA ligands. Thus, the reaction mechanism of catalytic cyclohexane oxygenation depends on the electronic effects of the ligands.
机译:一系列单核ru〜(III)配合物[RuCl 2(L)]〜+,其中L是Tris(2-吡啶基甲基)胺(TPA)或四种TPA衍生物作为Tetra-Dentate配体中的一种,并通过光谱来表征方法,X射线晶体学和电化学测量。测定具有载有一个二甲基甲酰胺部分的非三折叠TPA配体的Ru〜(III)络合物的几何形状,表明尼古丁部分将反式转移到吡啶基团,但不适用于氯通配体。显示TPA配体的取代基来调节钌中心的氧化还原电位,如图符号为200mV的线性哈姆特图所示,对于ru〜(iii)/ ru〜(iv)与相对大的rho值( + 0.150)。这些配合物用作乙腈中的烷烃官能化的有效催化剂,其用M-氯 - 苯甲酸(MCPBA)在室温下作为末端氧化剂。它们表现出相当良好的环己烷氧化反应性(C-H键能94 kcal mol〜(-1)),并且通过在初始速率和翻转数量方面,通过TPA配体对TPA配体的电子效应显着改变反应性。用Ru〜(III)复合物在H_2〜(18)O存在下用〜(16)o-MCPBA催化氧合〜(16)o-MCPBA,得到〜(18)o-标记的环己醇,其中100%包含〜(18)o来自水分子的原子。在没有基质的催化条件下共振拉曼光谱表明具有较低粘合能量的Ru〜(iv)= o中间的形成。在环己烷氧化方面的动力学同位素效应(kies)表明氢抽取是速率确定步骤,并且kie值取决于TPA配体的取代基。因此,催化环己烷氧合的反应机理取决于配体的电子效应。

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