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首页> 外文期刊>Molecules >Influence of Halogen Substituents on the Catalytic Oxidation of 2,4,6-Halogenated Phenols by Fe(III)-Tetrakis(p-hydroxyphenyl) porphyrins and Potassium Monopersulfate
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Influence of Halogen Substituents on the Catalytic Oxidation of 2,4,6-Halogenated Phenols by Fe(III)-Tetrakis(p-hydroxyphenyl) porphyrins and Potassium Monopersulfate

机译:Fe(III)-四(对-羟基苯基)卟啉和单过硫酸钾对卤素取代基对2,4,6-卤代苯酚催化氧化的影响

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The influence of halogen substituents on the catalytic oxidation of 2,4,6-trihalogenated phenols (TrXPs) by iron(III)-porphyrin/KHSO5 catalytic systems was investigated. Iron(III)-5,10,15,20-tetrakis(p-hydroxyphenyl)porphyrin (FeTHP) and its supported variants were employed, where the supported catalysts were synthesized by introducing FeTHP into hydroquinone-derived humic acids via formaldehyde poly-condensation. F (TrFP), Cl (TrCP), Br (TrBP) and I (TrIP) were examined as halogen substituents for TrXPs. Although the supported catalysts significantly enhanced the degradation and dehalogenation of TrFP and TrCP, the oxidation of TrBP and TrIP was not enhanced, compared to the FeTHP catalytic system. These results indicate that the degree of oxidation of TrXPs is strongly dependent on the types of halogen substituent. The order of dehalogenation levels for halogen substituents in TrXPs was F > Cl > Br > I, consistent with their order of electronegativity. The electronegativity of a halogen substituent affects the nucleophilicity of the carbon to which it is attached. The levels of oxidation products in the reaction mixtures were analyzed by GC/MS after extraction with n-hexane. The most abundant dimer product from TrFP via 2,6-difluoroquinone is consistent with a scenario where TrXP, with a more electronegative halogen substituent, is readily oxidized, while less electronegative halogen substituents are oxidized less readily by iron(III)-porphyrin/KHSO5 catalytic systems.
机译:研究了卤素取代基对铁(III)-卟啉/ KHSO 5 催化体系对2,4,6-三卤代酚(TrXPs)催化氧化的影响。使用了铁(III)-5,10,15,20-四(对羟基苯基)卟啉(FeTHP)及其负载型,其中负载型催化剂通过甲醛缩聚将FeTHP引入对苯二酚衍生的腐殖酸中而合成。检查了F(TrFP),Cl(TrCP),Br(TrBP)和I(TrIP)作为TrXPs的卤素取代基。尽管负载的催化剂显着增强了TrFP和TrCP的降解和脱卤,但与FeTHP催化体系相比,TrBP和TrIP的氧化并未增强。这些结果表明,TrXPs的氧化程度在很大程度上取决于卤素取代基的类型。 TrXPs中卤素取代基的脱卤水平顺序为F> Cl> Br> I,与其电负性顺序一致。卤素取代基的电负性会影响与其相连的碳的亲核性。用正己烷萃取后,通过GC / MS分析反应混合物中氧化产物的水平。 TrFP经由2,6-二氟醌得到的最丰富的二聚体产物与以下情形一致:具有更高负电性卤素取代基的TrXP易于被氧化,而具有更低负电性卤素取代基的铁(III)-卟啉/ KHSO则不易被氧化 5 催化系统。

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    《Molecules》 |2011年第1期|共页
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