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Fe^\textV(O)(TAML)高价铁-氧反应中间体活化C-H键的机理转变的理论研究

A Mechanistic Switch in C-H Bond Activation by Elusive Fe^\textV(O)(TAML) Reaction Intermediate: A Theoretical Study

  • 摘要: 本文运用密度泛函理论对Gupta实验中脂肪族与芳香族底物C-H键氧化反应中所表现出的动力学差异进行深入的机理研究. 计算表明,这种差异是由于两种底物(脂肪族的环己烷、2,3-二甲基丁烷两种底物以及芳香族的甲苯、乙苯和异丙苯三种底物)C-H键活化反应机理的不同所造成. 对于脂肪族底物,活性反应中间体Fe^\mathrmV(O)(TAML)进行C-H氧化是一种氢原子转移过程;而对于芳香族底物,C-H键活化则是一个质子耦合的电子转移过程,并且在过渡态具有质子转移特性,即质子耦合的电子转移过程. 这种差异是由四氨基的TAML环和芳香底物的苯环之间存在的\pi-\pi相互作用产生的,具有"拉电子"效应,从而使得电子从芳香化底物转移到Fe^\mathrmV(O)(TAML)氧化物的效率降低.

     

    Abstract: The divergent behavior of C-H bond oxidations of aliphatic substrates compared to those of aromatic substrates shown in Gupta's experiment was mechanistically studied herein by means of density functional theory calculations. Our calculations reveal that such difference is caused by different reaction mechanisms between two kinds of substrates (the aliphatic cyclohexane, 2, 3-dimethylbutane and the aromatic toluene, ethylbenzene and cumene). For the aliphatic substrates, C-H oxidation by the oxidant Fe^\rmV(O)(TAML) is a hydrogen atom transfer process; whereas for the aromatic substrates, C-H oxidation is a proton-coupled electron transfer (PCET) process with a proton transfer character on the transition state, that is, a proton-coupled electron transfer process holding a proton transfer-like transition state (PCET(PT)). This difference is caused by the strong \pi-\pi interactions between the tetra-anionic TAML ring and the phenyl ring of the aromatic substrates, which has a "pull" effect to make the electron transfer from substrates to the Fe=O moiety inefficient.

     

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