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具有 N 基中性配体的稳定铁配合物在中性 pH 下作为高效类芬顿催化剂。

Robust iron coordination complexes with N-based neutral ligands as efficient Fenton-like catalysts at neutral pH.

机构信息

LEQUIA, Institute of the Environment, Universitat de Girona , Campus Montilivi, E17071 Girona (Catalonia - Spain).

出版信息

Environ Sci Technol. 2013 Sep 3;47(17):9918-27. doi: 10.1021/es401602t. Epub 2013 Aug 21.

Abstract

The homogeneous Fenton-like oxidation of organic substrates in water with hydrogen peroxide, catalyzed by six different metal coordination complexes with N-based neutral ligands, was studied at ambient conditions and initial pH 7, employing hydrogen peroxide as the terminal oxidant. At low catalyst concentration, the catalytic oxidative depletion of toluene achieved by selected catalysts was much more efficient than that obtained by the Fenton reagent at pH 3. The influence of pH, the water matrix and the catalyst/hydrogen peroxide concentration were investigated for the oxidation of toluene employing [FeCl2(bpmcn)] (1, bpmcn = N,N'-bis(2-pyridylmethyl)-N,N'-dimethyl-trans-1,2-diaminocyclohexane), the most efficient catalyst of the series. Moreover, the evolution of catalysts [FeCl2(bpmcn)] (1) and [Fe(OTf)2(Pytacn)] (3, Pytacn = 1-(2-pyridylmethyl)-4,7-dimethyl-1,4,7-triazacyclononane, OTf = trifluoromethanesulfonate anion) during the course of the reaction was also studied by electrospray ionization mass spectrometry (ESI-MS). The oxidation products derived from toluene oxidation were also analyzed. A plausible mechanism of toluene degradation using [FeCl2(bpmcn)] (1) and [Fe(OTf)2(Pytacn)] (3) as catalysts was proposed, which involves the coexistence of a metal-based path, analogous to that operating in organic media where substrate oxidation is executed by an iron(V)-oxo-hydroxo species, in parallel to a Fenton-type process where hydroxyl radicals are formed.

摘要

在环境条件和初始 pH 值 7 下,研究了在过氧化氢存在下,六种不同的基于 N 的中性配体的金属配合物作为催化剂,将有机底物在水中进行均相芬顿样氧化。在低催化剂浓度下,与 pH 值 3 时的芬顿试剂相比,所选催化剂催化氧化消耗甲苯的效率要高得多。研究了 pH 值、水基质和催化剂/过氧化氢浓度对[FeCl2(bpmcn)](1,bpmcn = N,N'-双(2-吡啶基甲基)-N,N'-二甲基-trans-1,2-二氨基环己烷)氧化甲苯的影响,[FeCl2(bpmcn)](1)是该系列中最有效的催化剂。此外,还通过电喷雾电离质谱(ESI-MS)研究了催化剂[FeCl2(bpmcn)](1)和[Fe(OTf)2(Pytacn)](3,Pytacn = 1-(2-吡啶基甲基)-4,7-二甲基-1,4,7-三氮杂环壬烷,OTf = 三氟甲磺酸根阴离子)在反应过程中的演变。还分析了甲苯氧化生成的氧化产物。提出了使用[FeCl2(bpmcn)](1)和[Fe(OTf)2(Pytacn)](3)作为催化剂时甲苯降解的可能机理,其中涉及金属基途径的共存,类似于在有机介质中进行底物氧化的铁(V)-氧-羟自由基物种,与形成羟基自由基的芬顿型过程并行。

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