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Kinetics and Mechanism of Oxidation Reactions of Porphyrin-Iron(IV)-Oxo Intermediates

机译:卟啉-铁(IV)-氧代中间体的氧化反应动力学及机理

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摘要

The kinetics of reactions of three porphyrin-iron(IV)-oxo derivatives with alkenes and benzylic alcohols were measured. The iron-oxo systems studied were 5,10,15,20-tetrakis(2,6-dichlorophenyl)porphyrin-iron(IV)-oxo (>2a), 5,10,15,20-tetrakis(2,6-difluorophenyl)porphyrin-iron(IV)-oxo (>2b), and 5,10,15,20-tetrakis(pentafluorophenyl)porphyrin-iron(IV)-oxo (>2c). Species >2 were stable for hours at room temperature as dilute solutions in acetonitrile and reacted hundreds to thousands of times faster in the presence of high concentrations of substrates. Typical second-order rate constants determined from pseudo-first-order kinetic studies are 1–2 × 10−2 M−1 s−1 for reactions with styrene and 3 × 10−2 M−1 s−1 for reactions with benzyl alcohol. The reactivity order for the iron-oxo species was >2a > >2b > >2c, which is inverted from that expected on the basis of the electron demand of the porphyrin macrocycles, and the oxidation reaction was suppressed when excess porphyrin-iron(III) complex was added to reaction mixtures. These observations indicate that the reactions involve disproportionation of the iron(IV)-oxo species >2 to give an iron(III) species and a more highly oxidized iron species, presumed to be iron(IV)-oxo porphyrin radical cation, that is the true oxidant in the reactions. Analyses of the kinetics of oxidations of a series of para-substituted benzylic alcohols with Hammett σ+ substituent constants and with a dual parameter method developed by Jiang (Jiang, X. K. Acc. Chem. Res. >1997, 30, 283) indicated that considerable positive charge developed on the benzylic carbons in the oxidation reactions, as expected for electrophilic oxidants, and also that substantial radical character developed on the benzyl carbon in the transition states.
机译:测量了三种卟啉-铁(IV)-氧代衍生物与烯烃和苯甲醇的反应动力学。研究的铁-氧代系统为5,10,15,20-四(2,6-二氯苯基)卟啉-铁(IV)-氧代(> 2a ),5,10,15,20-四(2,6-二氟苯基)卟啉-铁(IV)-氧代(> 2b )和5,10,15,20-四(五氟苯基)卟啉-铁(IV)-氧代(< strong> 2c )。物种> 2 在室温下可保持为数小时的乙腈稀释溶液,并且在存在高浓度底物的情况下,反应速度快数百至数千倍。由伪一阶动力学研究确定的典型二阶速率常数为1–2×10 −2 M −1 s -1 与苯乙烯和3×10 −2 M −1 s −1 与苯甲醇反应。铁-氧物种的反应顺序为> 2a 2b 2c ,这与基于电子需求的预期顺序相反当向反应混合物中加入过量的卟啉-铁(III)配合物时,氧化反应被抑制。这些观察结果表明,该反应涉及铁(IV)-氧代物种> 2 的歧化,从而得到铁(III)物种和更高氧化度的铁物种,推测是铁(IV)-氧代。卟啉自由基阳离子,即反应中的真正氧化剂。用Hammettσ + 取代基常数和由Jiang(Jiang,XK Acc。Chem。Res。>提出的双参数方法)分析一系列对位取代的苄醇的氧化动力学1997 ,30,283)表明,在氧化反应中,苄基碳上产生了大量的正电荷,这是亲电子氧化剂所期望的,并且在过渡态下,苄基碳上也产生了显着的自由基特征。

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    Zhengzheng Pan; Martin Newcomb;

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  • 年(卷),期 -1(46),16
  • 年度 -1
  • 页码 6767–6774
  • 总页数 21
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