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首页> 外文期刊>Journal of Molecular Structure >Synthesis, characterization, DFT calculations and catalase-like enzymatic activities of novel hexadentate Schiff base and its manganese complexes
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Synthesis, characterization, DFT calculations and catalase-like enzymatic activities of novel hexadentate Schiff base and its manganese complexes

机译:新型十六发术席夫碱的合成,表征,DFT计算和过氧化酶样酶活性及其锰络合物

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摘要

We reported the synthesis of the manganese(II) and manganese(III) complexes of a novel hexadentate Schiff base ligand (HBME) (1) obtained from the condensation of triethylenetetramine and 2 equiv. of 1-(biphenyl)-2-hydroxyimino-2-(morpholino)-1-ethanone. Hexadentate Schiff base ligand reacted with manganese(II) perchlorate or manganese(III) acetate and sodium azide, to give rise to a series of mono and dinuclear complexes [Mn(BME)(2)tren)] (2), [Mn-2(BME)(2)tren(N-3)(2)] (3) and [Mn-2(BME)(2)tren(N-3)(4)] (4). Synthesized molecules were characterized by elemental analyses, ICP-MS, spectroscopic studies, thermal analyses, molar conductivity and magnetic susceptibility measurements. The quantum chemical calculations of the HBME and complexes (2-4) were performed in the ground state using the DFT of B3LYP level with 6-311G(d,p) and LanL2DZ basis sets, respectively. H-1 and C-13 NMR chemical shifts were calculated by using the gauge independent atomic orbital (GIAO) method and the electronic properties such as HOMO-LUMO energies were determined by the time-dependent DFT approach. The calculated spectroscopic values for the HBME were in very good agreement with experimental ones. Furthermore, catalytic activity of the complexes for the disproportionation of hydrogen peroxide was also investigated in the presence of 1-methylimidazole. All the complexes displayed catalytic activity for the disproportionation of H2O2 significantly, but the activities of the (3) and (4) were relatively higher than the other molecules. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们报道了从三乙基甲胺和2当量的缩合获得的新型六辐射席夫碱配体(HBME)(1)的锰(II)和锰(III)复合物的合成。 1-(联苯基)-2-羟基咪唑-2-(麦啉基)-1-乙酮。 Hexadate Schiff基碱配体与锰(II)高氯酸盐或乙酸锰(III)和叠氮化钠反应,得到一系列单核和二核配合物[Mn(BME)(2)Tren)](2),[Mn- 2(BME)(2)Tren(N-3)(2)](3)和[Mn-2(BME)(2)Tren(N-3)(4)](4)。通过元素分析,ICP-MS,光谱研究,热分析,摩尔电导率和磁性敏感度测量,表征合成分子。 HBME和复合物(2-4)的量子化学计算使用B3LYP水平的DFT分别在接地状态下进行,分别具有6-311g(d,p)和LANL2DZ基础组。通过使用规格独立的原子轨道(Giao)方法计算H-1和C-13 NMR化学位移,并且通过时间依赖的DFT方法确定了诸如Homo-Lumo能量的电子性质。 HBME的计算的光谱值与实验结果非常好。此外,还在1-甲基咪唑的存在下研究了络合物的催化活性用于过氧化氢的歧化。所有复合物显着展示了H 2 O 2的歧化的催化活性,但(3)和(4)的活性比其他分子相对较高。 (c)2019 Elsevier B.v.保留所有权利。

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