铁(III)和钴(II)与丙氨酸配合物的合成、表征、x射线衍射研究及其生物活性

Shuaibu Musa, S. Idris, A. D. Onu
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摘要

Fe (III)和Co (II)与氨基酸等生物分子形成的配合物在人类生活中发挥着重要作用。它们既可以用作生物活性化合物,也可以用于工业。用丙氨酸合成了Fe (III)和Co (II)配合物。通过x射线衍射、磁化率、元素分析(AAS)、摩尔电导、熔点、红外和紫外可见分光光度等方法对配合物进行了表征。元素分析确定了铁(III)丙氨酸的螯合比为1:3(金属:配体),钴(II)丙氨酸的螯合比为1:2。配合物的摩尔电导率表明配合物本质上不具有电解性。x射线数据表明,除丙氨酸为六方外,所有配合物均为单斜晶系。磁化率和电子能谱表明配合物具有高自旋和八面体结构。该配合物显示出与氨基酸相当的活性增强。
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Synthesis, characterization, x-ray diffraction studies and biological activities of iron(III) and cobalt(II) complexes with alanine
The resulted complexes produced between Fe (III) and Co (II) with biological molecules like amino acids play an important role in human life. They can be used as bioactive compounds as well as in industries. Fe (III) and Co (II) complexes are synthesized with Alanine amino acid. The complexes were characterized by X-ray diffraction, magnetic suscetivility, elemental analysis (AAS), molar conductance, melting point, infrared and uv-visible spectrophotometry analyses. The elemental analyses were used to determine the chelation ratio, 1:3(metal: ligands) for iron (III) Alanine and 1:2 ratio for cobalt (II) Alanine. The molar conductivity of the complexes show that the complexes are not electrolytic in nature. The x-ray data suggest monoclinic crystal system for all the complexes with the exception of Co-alanine, which is hexagonal. The magnetic susceptivility and electronic spectra suggest the complexes are high spin with octahedral geometry.The complexes show enhance activity in comparable to the amino acid.  
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