首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Influence of the geometry around the manganese ion on the peroxidase and catalase activities of Mn(III)-Schiff base complexes
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Influence of the geometry around the manganese ion on the peroxidase and catalase activities of Mn(III)-Schiff base complexes

机译:锰离子周围的几何形状对Mn(III)-席夫碱配合物的过氧化物酶和过氧化氢酶活性的影响

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The peroxidase and catalase activities of eighteen manganese-Schiff base complexes have been studied. A correlation between the structure of the complexes and their catalytic activity is discussed on the basis of the variety of systems studied. Complexes 1-18 have the general formulae [MnL ~n(D) _2](X)(H _2O/CH _3OH) _m, where L ~n = L ~1-L ~(13); D = H _2O, CH _3OH or Cl; m = 0-2.5 and X = NO _3 ~-, Cl ~-, ClO _4 ~-, CH _3COO ~-, C _2H _5COO ~- or C _5H _(11)COO ~-. The dianionic tetradentate Schiff base ligands H _2L ~n are the result of the condensation of different substituted (OMe-, OEt-, Br-, Cl-) hydroxybenzaldehyde with diverse diamines (1,2-diaminoethane for H _2L ~1-H _2L ~2; 1,2-diamino-2-methylethane for H _2L ~3-H _2L ~4; 1,2-diamino-2,2-dimethylethane for H _2L ~5; 1,2-diphenylenediamine for H _2L ~6-H _2L ~7; 1,3-diaminopropane for H _2L ~8-H _2L ~(11); 1,3-diamino-2,2- dimethylpropane for H _2L ~(12)-H _2L ~(13)). The new Mn(III) complexes [MnL ~1(H _2O)Cl](H _2O) _(2.5) (2), [MnL ~2(H _2O) _2](NO _3)(H _2O) (4), [MnL ~6(H _2O) _2][MnL ~6(CH _3OH)(H _2O)](NO _3) _2(CH _3OH) (8), [MnL ~6(H _2O)(OAc)](H _2O) (9) and [MnL ~7(H _2O) _2](NO _3)(CH _3OH) _2 (12) were isolated and characterised by elemental analysis, magnetic susceptibility and conductivity measurements, redox studies, ESI spectrometry and UV, IR, paramagnetic ~1H NMR, and EPR spectroscopies. X-ray crystallographic studies of these complexes and of the ligand H _2L ~6 are also reported. The crystal structures of the rest of the complexes have been previously published and herein we have only revised their study by those techniques still not reported (EPR and ~1H NMR for some of these compounds) and which help to establish their structures in solution. Complexes 1-12 behave as more efficient mimics of peroxidase or catalase in contrast with 13-18. The analysis between the catalytic activity and the structure of the compounds emphasises the significance of the existence of a vacant or a labile position in the coordination sphere of the catalyst.
机译:研究了十八种锰-席夫碱配合物的过氧化物酶和过氧化氢酶活性。根据所研究的各种系统,讨论了配合物的结构与其催化活性之间的相关性。配合物1-18具有通式[MnL〜n(D)_2](X)(H _2O / CH _3OH)_m,其中L〜n = L〜1-L〜(13); D = H _2O,CH _3OH或Cl; m = 0-2.5且X = NO _3〜-,Cl〜-,ClO_4〜-,CH _3COO〜-,C _2H _5COO〜-或C _5H _(11)COO〜-。双阴离子四齿席夫碱配体H _2L〜n是不同取代的(OMe-,OEt-,Br-,Cl-)羟基苯甲醛与各种二胺(H _2L〜1-H _2L的1,2-二氨基乙烷)缩合的结果〜2; H _2L〜3-H _2L〜4的1,2-二氨基-2-甲基乙烷; H _2L〜5的1,2-二氨基-2,2-二甲基乙烷; H _2L〜6的1,2-二苯二胺-H _2L〜7; H _2L〜8-H _2L〜(11)的1,3-二氨基丙烷; H _2L〜(12)-H _2L〜(13)的1,3-二氨基-2,2-二甲基丙烷。新的Mn(III)配合物[MnL〜1(H _2O)Cl](H _2O)_(2.5)(2),[MnL〜2(H _2O)_2](NO _3)(H _2O)(4) ,[MnL〜6(H _2O)_2] [MnL〜6(CH _3OH)(H _2O)](NO _3)_2(CH _3OH)(8),[MnL〜6(H _2O)(OAc)](分离出H _2O)(9)和[MnL〜7(H _2O)_2](NO _3)(CH _3OH)_2(12)并通过元素分析,磁化率和电导率测量,氧化还原研究,ESI光谱和UV进行表征,IR,顺磁性〜1H NMR和EPR光谱。还报道了这些络合物和配体H _2L〜6的X射线晶体学研究。其余配合物的晶体结构先前已经发表过,在这里我们仅通过尚未报道的技术(对于其中某些化合物的EPR和〜1H NMR)对它们的研究进行了修订,这有助于在溶液中建立其结构。与13-18相比,复合物1-12表现出更有效的过氧化物酶或过氧化氢酶模拟物。化合物的催化活性和结构之间的分析强调了在催化剂配位域中存在空位或不稳定位置的重要性。

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