首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structural and Electronic Characterization of the Complexes Obtained by the Interaction between Bare and Hydrated First-Row Transition-Metal Ions (Mn~(2+),Fe~(2+),Co~(2+),Ni~(2+),Cu~(2+),Zn~(2+)) and Glycine
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Structural and Electronic Characterization of the Complexes Obtained by the Interaction between Bare and Hydrated First-Row Transition-Metal Ions (Mn~(2+),Fe~(2+),Co~(2+),Ni~(2+),Cu~(2+),Zn~(2+)) and Glycine

机译:裸露与水合第一行过渡金属离子(Mn〜(2 +),Fe〜(2 +),Co〜(2 +),Ni〜(2+)之间相互作用的配合物的结构和电子表征,Cu〜(2 +),Zn〜(2+))和甘氨酸

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The complexes formed by the simplest amino acid,glycine,with different bare and hydrated metal ions (Mn~(2+),Fe~(2+),Co~(2+),Ni~(2+),Cu~(2+),Zn~(2+)) were studied in the gas phase and in solvent in order to give better insight into the field of the metal ion-biological ligand interactions.The effects of the size and charge of each cation on the organization of the surrounding water molecules were analyzed.Results in the gas phase showed that the zwitterion of glycine is the form present in the most stable complexes of all ions and that it usually gives rise to an eta~2O,O coordination type.After the addition of solvation sphere,a resulting octahedral arrangement was found around Ni~(2+),Co~(2+),and Fe~(2+) ions in their high-spin states,whereas the bipyramidal-trigonal (Mn~(2+) and Zn~(2+)) or square-pyramidal (Cu~(2+)) geometries were observed for the other metal species,according to glycine behaves as bi- or monodentate ligand.Despite the fact that the zwitterionic structure is in the ground conformation in solution,its complexes in water are less stable than those obtained from the canonical form.Binding energy values decrease in the order Cu~(2+) > Ni~(2+) > Zn~(2+) approx= Co~(2+) > Fe~(2+) > Mn~(2+) and Cu~(2+) > Ni~(2+) > Mn~(2+) approx= Zn~(2+) > Fe~(2+) > Co~(2+) for M~(2+)-Gly and Gly-M~(2+)(H_2O)_n complexes,respectively.The nature of the metal ion-ligand bonds was examined by using natural bond order and charge decomposition analyses.
机译:由最简单的氨基酸,甘氨酸与不同的裸露和水合金属离子(Mn〜(2 +),Fe〜(2 +),Co〜(2 +),Ni〜(2 +),Cu〜(为了更好地了解金属离子-生物配体相互作用的领域,研究了气相和溶剂中的2 +),Zn〜(2+))。每种阳离子的大小和电荷对离子的影响在气相中的结果表明,甘氨酸的两性离子是所有离子中最稳定的络合物中存在的形式,通常会产生eta〜2O,O配位类型。添加溶剂化球体后,在高自旋态的Ni〜(2 +),Co〜(2+)和Fe〜(2+)离子周围发现了八面体排列,而双锥体三角(Mn〜(观察到其他金属种类的2+)和Zn〜(2+))或方形金字塔形(Cu〜(2+))几何形状,根据甘氨酸表现为双齿或单齿配体,尽管两性离子结构在溶液中的地面构象,其在水中的配合物比从规范形式获得的配合物不稳定。结合能值以Cu〜(2+)> Ni〜(2+)> Zn〜(2+)的顺序递减Co〜(2+)> Fe〜(2+)> Mn〜(2+)和Cu〜(2+)> Ni〜(2+)> Mn〜(2+)近似= Zn〜(2+)> Fe〜(2+)> Co〜(2+)分别用于M〜(2 +)-Gly和Gly-M〜(2 +)(H_2O)_n配合物。研究了金属离子配体键的性质通过使用自然键序和电荷分解分析。

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