首页> 外文期刊>Inorganica Chimica Acta >Synthesis, spectral (UV-Vis, IR, ESI-MS), magnetic and structural characterizations, and the antimicrobial effect of potassium isothiocyanato-(N-salicylidene-amino-acidato)cuprates
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Synthesis, spectral (UV-Vis, IR, ESI-MS), magnetic and structural characterizations, and the antimicrobial effect of potassium isothiocyanato-(N-salicylidene-amino-acidato)cuprates

机译:异硫氰酸钾-(N-水杨基-氨基酸)杯状碳酸酯的合成,光谱(紫外-可见,红外,ESI-MS),磁性和结构表征以及抗菌作用

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A series of potassium isothiocyanato-(N-salicylidene-amino acidato)cuprates with the general formulas of K_2[Cu_2(sal-aa) _2(μ-NCS)_2]·nH_2O, where n = 0 or 4 and (sal-aa) stands for the dianion of N-salicylideneamino acid derived from glycine (I), dl-α-alanine (II), dl-valine (III), dl-phenylalanine (IV), and {K[Cu(sal-β-ala)(μ-NCS)]}_n for β-alanine (V), respectively, was synthesized and fully characterized by elemental analysis, UV-Vis and IR spectroscopy, ESI-MS spectrometry, magnetic measurements, and X-ray structural analysis (II and IV). It has been found that the copper(II) atom adopts a distorted square-pyramidal surrounding in the dimeric complexes I-IV, while the geometry in the polymeric complex V can be described as distorted square-bipyramidal. The analysis of magnetic properties revealed weak antiferromagnetic exchanges in the dinuclear species I-IV and an alternating ferro/antiferromagnetic exchange in the case of 1D-polymeric compound V. Moreover, the complexes were tested for their antibacterial activity against the G+ bacteria Staphylococcus aureus, G- bacteria Escherichia coli, filamentous fungi Microsporum gypseum, and yeast Candida albicans. The best results were achieved with G+ bacteria S. aureus with MIC values in the range of 0.22-0.57 mmol L~(-1). It may be concluded that both the antimicrobial and antifungal activity decreased within the tested group of cuprates derived from α-amino acids with the increasing lipophility of the complexes, i.e. I → IV.
机译:一系列的异硫氰酸钾-(N-水杨基-氨基酸基)杯统具有K_2 [Cu_2(sal-aa)_2(μ-NCS)_2]·nH_2O的通式,其中n = 0或4和(sal-aa )代表衍生自甘氨酸(I),dl-α-丙氨酸(II),dl-缬氨酸(III),dl-苯丙氨酸(IV)和{K [Cu(sal-β- ala)(μ-NCS)]} _ n分别用于β-丙氨酸(V)的合成,并通过元素分析,UV-Vis和IR光谱,ESI-MS光谱,磁测量和X射线结构分析进行了全面表征(II和IV)。已经发现,铜(II)原子在二聚体配合物I-IV中采用扭曲的正方形-金字塔形包围,而聚合物配合物V中的几何形状可以描述为扭曲的正方形-双锥体。磁性分析表明,在双核物质I-IV中弱的反铁磁交换,在1D高分子化合物V的情况下,铁/反铁磁交替发生。此外,还测试了该复合物对G +细菌金黄色葡萄球菌的抗菌活性, G-细菌大肠杆菌,丝状真菌小孢子菌石膏和酵母白色念珠菌。用MIC值在0.22-0.57 mmol L〜(-1)范围内的G +细菌金黄色葡萄球菌获得了最佳结果。可以得出结论,在测试的α-氨基酸衍生的铜酸盐组中,随着复合物的亲脂性增加,即I→IV,抗微生物和抗真菌活性均降低。

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