Szávuly Miklós István, Surducan Mihai, Nagy Emőke, Surányi Mátyás, Speier Gábor, Silaghi-Dumitrescu Radu, Kaizer József
Department of Chemistry, University of Pannonia, 8201 Veszprém, Wartha Vince u. 1., Hungary.
Dalton Trans. 2016 Oct 7;45(37):14709-18. doi: 10.1039/c6dt01598k. Epub 2016 Jun 10.
The reactivity of the previously reported peroxo adducts Fe2(μ-O2)(L(1))4(CH3CN)2, and Fe2(μ-O2)(L(2))4(CH3CN)2, (L(1) = 2-(2'-pyridyl)benzimidazole and L(2) = 2-(2'-pyridyl)-N-methylbenzimidazole) towards H2O2 as catalase mimics, and towards various phenols as functional RNR-R2 mimics, is described. Kinetic, mechanistic and computational studies gave direct evidence for the involvement of the (μ-1,2-peroxo)diiron(iii) intermediate in the O-H activation process via formation of low-spin oxoiron(iv) species.
报道了先前的过氧加合物Fe2(μ-O2)(L(1))4(CH3CN)2和Fe2(μ-O2)(L(2))4(CH3CN)2(L(1)=2-(2'-吡啶基)苯并咪唑,L(2)=2-(2'-吡啶基)-N-甲基苯并咪唑)作为过氧化氢模拟酶对H2O2的反应活性,以及作为功能性RNR-R2模拟物对各种酚类的反应活性。动力学、机理和计算研究提供了直接证据,证明(μ-1,2-过氧)二铁(III)中间体通过形成低自旋氧铁(IV)物种参与O-H活化过程。