首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis, crystal structures, magnetic properties and catecholase activity of double phenoxido-bridged penta-coordinated dinuclear nickel(II) complexes derived from reduced Schiff-base ligands: Mechanistic inference of catecholase activity
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Synthesis, crystal structures, magnetic properties and catecholase activity of double phenoxido-bridged penta-coordinated dinuclear nickel(II) complexes derived from reduced Schiff-base ligands: Mechanistic inference of catecholase activity

机译:还原的席夫碱配体衍生的双苯氧基桥联五配位双核镍(II)配合物的合成,晶体结构,磁性和儿茶酚酶活性:儿茶酚酶活性的机理推断

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摘要

Three double phenoxido-bridged dinuclear nickel(II) complexes, namely [Ni _2(L ~1) _2(NCS) _2] (1), [Ni _2(L _2) _2(NCS) _2] (2), and [Ni _2(L _3) _2(NCS) _2] (3) have been synthesized using the reduced tridentate Schiff-base ligands 2-[1-(3-methylamino-propylamino)-ethyl]-phenol (HL ~1), 2-[1-(2-dimethylamino-ethylamino)-ethyl]-phenol (HL ~2), and 2-[1-(3-dimethylamino-propylamino)-ethyl]-phenol (HL ~3), respectively. The coordination compounds have been characterized by X-ray structural analyses, magnetic-susceptibility measurements, and various spectroscopic methods. In all complexes, the nickel(II) ions are penta-coordinated in a square-pyramidal environment, which is severely distorted in the case of 1 (Addison parameter τ = 0.47) and 3 (τ = 0.29), while it is almost perfect for 2 (τ = 0.03). This arrangement leads to relatively strong antiferromagnetic interactions between the Ni(II) (S = 1) metal centers as mediated by double phenoxido bridges (with J values of -23.32 (1), -35.45 (2), and -34.02 (3) cm ~3 K mol ~(-1), in the convention H = -2JS _1S _2). The catalytic activity of these Ni compounds has been investigated for the aerial oxidation of 3,5-di-tert-butylcatechol. Kinetic data analysis following Michaelis-Menten treatment reveals that the catecholase activity of the complexes is influenced by the flexibility of the ligand and also by the geometry around the metal ion. Electrospray ionization mass spectroscopy (ESI-MS) studies (in the positive mode) have been performed for all the coordination compounds in the presence of 3,5-DTBC to characterize potential complex-substrate intermediates. The mass-spectrometry data, corroborated by electron paramagnetic resonance (EPR) measurements, suggest that the metal centers are involved in the catecholase activity exhibited by the complexes.
机译:三个双苯氧基桥双核镍(II)配合物,即[Ni _2(L〜1)_2(NCS)_2](1),[Ni _2(L _2)_2(NCS)_2](2)和[ Ni _2(L _3)_2(NCS)_2](3)已使用还原的三齿席夫碱配体2- [1-(3-甲基氨基-丙基氨基)-乙基]-苯酚(HL〜1),2合成-[1-(1-二甲基氨基-乙基氨基)-乙基]-苯酚(HL〜2)和2- [1-(3-二甲基氨基-丙基氨基)-乙基]-苯酚(HL〜3)。通过X射线结构分析,磁化率测量和各种光谱学方法对配位化合物进行了表征。在所有络合物中,镍(II)离子在方形金字塔形环境中都是五配位的,在1(Addison参数τ= 0.47)和3(τ= 0.29)的情况下会严重扭曲,而几乎是完美的对于2(τ= 0.03)。这种安排导致了Ni(II)(S = 1)金属中心之间的相对强的反铁磁相互作用,这是由双苯氧基氧化桥(J值为-23.32(1),-35.45(2)和-34.02(3)介导的) cm〜3 K mol〜(-1),按照惯例H = -2JS _1S _2)。已经研究了这些Ni化合物对于3,5-二叔丁基邻苯二酚的空中氧化的催化活性。 Michaelis-Menten处理后的动力学数据分析表明,配合物的儿茶酚酶活性受配体的柔韧性以及金属离子周围的几何形状影响。在3,5-DTBC存在下,对所有配位化合物均进行了电喷雾电离质谱(ESI-MS)研究(以阳性模式),以表征潜在的复杂底物中间体。通过电子顺磁共振(EPR)测量得到的质谱数据表明,金属中心参与了配合物所表现出的儿茶酚酶活性。

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