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首页> 外文期刊>New Journal of Chemistry >A green approach to Fenton chemistry: mono-hydroxylation of salicylic acid in aqueous medium by the electrogeneration of Fenton's reagent
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A green approach to Fenton chemistry: mono-hydroxylation of salicylic acid in aqueous medium by the electrogeneration of Fenton's reagent

机译:Fenton化学的绿色方法:通过Fenton试剂的电产生,水介质中水杨酸的单羟基化

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摘要

First, the electrochemical characteristics of Fenton's reagent (Fe(III), Fe(II) and hydrogen peroxide), including its catalytic (EC) behaviour were investigated. Second, the electrogeneration of hydrogen peroxide by a two-electron reduction of dissolved oxygen was conducted at a carbon electrode in a divided electrolysis cell and the concentration of hydrogen peroxide obtained was determined by the titration. The two approaches were then combined to give a one-pot, relatively green approach to aromatic hydroxylation reactions, with the electro-Fenton method allowing the iron to be used catalytically and the oxygen/water employed as the hydroxylation reagent by the in situ production of hydrogen peroxide. In particular, the preparative-scale hydroxylation of salicylic acid has been studied in an oxygen-saturated 0.1 M Na2SO4 pH 3.0 solution containing 5 mM Fe(n) and 5 mM salicylic acid at the controlled potential of -1.0 V vs. SCE. The study showed that after the attack of the hydroxyl radical produced in situ by the electro-Fenton process on salicylic acid, 2,3- and 2,5-dihydroxybenzoic acids were detected as primary monohydroxylated products with the highest yield of ca. 21.6 ± 2.5%.
机译:首先,研究了芬顿试剂(Fe(III),Fe(II)和过氧化氢)的电化学特性,包括其催化(EC)行为。其次,在分开的电解池中的碳电极上通过溶解氧的两电子还原来产生过氧化氢,并通过滴定法测定所获得的过氧化氢的浓度。然后将这两种方法结合起来,以单锅法,相对绿色的方式进行芳族羟基化反应,电芬顿法允许通过原位生产铁而催化使用铁,将氧气/水用作羟基化试剂。过氧化氢。特别是,在-1.0 V vs. SCE的受控电势下,在含有5 mM Fe(n)和5 mM水杨酸的氧饱和的0.1 M Na2SO4 pH 3.0溶液中,研究了水杨酸的制备规模羟基化。研究表明,通过电芬顿法原位产生的羟基自由基攻击水杨酸后,检测到2,3-和2,5-二羟基苯甲酸为一级单羟基化产物,产率最高。 21.6±2.5%。

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