首页> 外文期刊>Journal of Physical Organic Chemistry >A paradigm shift in rate determining step from single electron transfer between phenylsulfinylacetic acids and iron(III) polypyridyl complexes to nucleophilic attack of water to the produced sulfoxide radical cation: a non-linear Hammett
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A paradigm shift in rate determining step from single electron transfer between phenylsulfinylacetic acids and iron(III) polypyridyl complexes to nucleophilic attack of water to the produced sulfoxide radical cation: a non-linear Hammett

机译:速率确定步骤的范式转变,从苯基亚磺酰基乙酸和铁(III)聚吡啶基络合物之间的单电子转移到水对所产生的亚砜自由基阳离子的亲核攻击:非线性哈米特

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Mechanism of oxidative decarboxylation of phenylsulfinylacetic acids (PSAAs) by iron(III) polypyridyl complexes in aqueous acetonitrile medium has been investigated spectrophotometrically. An initial intermediate formation between PSAA and [Fe(NN)(3)](3+) is confirmed from the observed Michaelis-Menten kinetics and fractional order dependence on PSAA. Significant rate retardation with concentration of [Fe(NN)(3)](3+) is rationalized on the basis of coordination of a water molecule at the carbon atom adjacent to the ring nitrogen of the metal polypyridyl complexes by nucleophilic attack at higher concentrations. Electron-withdrawing and electron-releasing substituents in PSAA facilitate the reaction and Hammett correlation gives an upward 'V' shaped curve. The apparent upward curvature is rationalized based on the change in the rate determining step from electron transfer to nucleophilic attack, by changing the substituents from electron-releasing to electron-withdrawing groups. Electron-releasing substituents in PSAA accelerate the electron transfer from PSAA to the complex and also stabilize the intermediate through resonance interaction leading to negative reaction constants (rho). Conversely, electron-withdrawing groups, while retarding the electron transfer exert an accelerating effect on the nucleophilic attack of H2O which leading to low magnitude of rho(+) compared to high rho(-) values of electron-releasing groups. Marcus theory is applied, and a fair agreement is seen with the experimental values. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:分光光度法研究了铁(III)聚吡啶基络合物在乙腈介质中氧化苯磺酰乙酸(PSAAs)的氧化脱羧机理。从观察到的Michaelis-Menten动力学和对PSAA的分数阶依赖性,证实了PSAA和[Fe(NN)(3)](3+)之间的初始中间形成。浓度较高的[Fe(NN)(3)](3+)速率显着降低是基于较高浓度下水分子在金属多吡啶基配合物的环氮附近的碳原子上的亲核攻击而形成的配位关系。 PSAA中的吸电子和放电子取代基促进了反应,哈米特相关性给出了向上的“ V”形曲线。通过将取代基从释放电子基团变为吸电子基团,从电子转移到亲核进攻的速率确定步骤的变化,可以使表观的向上弯曲合理化。 PSAA中的释放电子的取代基会加速电子从PSAA转移至络合物,并通过共振相互作用稳定中间体,从而导致负反应常数(rho)。相反,吸电子基团在阻止电子转移的同时,对H2O的亲核进攻产生了加速作用,与释放电子基团的高rho(-)值相比,导致低rho(+)值。应用了马库斯(Marcus)理论,并与实验值达成了一致。版权所有(C)2016 John Wiley&Sons,Ltd.

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