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Factors Governing the Metal Coordination Number in Metal Complexes from Cambridge Structural Database Analyses

机译:剑桥结构数据库分析中金属配合物中金属配位数的控制因素

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The metal coordination number (CN) is a key determinant of the structure and properties of metal complexes.It also plays an important role in metal selectivity in certain metalloproteins.Despite its central role,the preferred CN for several metal cations remains ambiguous,and the factors determining the metal CN are not fully understood.Here,we evaluate how the CN depends on (1) the metal's size,charge,and charge-accepting ability for a given set of ligands,and (2) the ligand's size,charge,charge-donating ability,and denticity for a given metal by analyzing the Cambridge Structural Database (CSD) structures of metal ions in the periodic table.The results show that for a given ligand type,the metal's size seems to affect its CN more than its charge,especially if the ligand is neutral,whereas,for a given metal type,the ligand's charge and charge-donating ability appear to affect the metal CN more than the ligand's size.Interestingly,all 98 metal cations surveyed could adopt more than than one CN,and most of them show an apparent preference toward even rather than odd CNs.Furthermore,as compared to the preferred metal CNs observed in the CSD,those in protein binding sites generally remain the same.This implies that the protein matrix (excluding amino acid residues in the metal's first and second coordination shell) does not impose severe geometrical restrictions on the bound metal cation.
机译:金属配位数(CN)是决定金属配合物结构和性能的关键因素。它在某些金属蛋白的金属选择性中也起着重要作用。尽管起着中心作用,但对几种金属阳离子的首选CN仍然是模棱两可的,并且尚未完全了解决定金属CN的因素。在此,我们评估CN如何取决于(1)对于给定的一组配体金属的尺寸,电荷和电荷接受能力,以及(2)配体的尺寸,电荷,通过分析元素周期表中金属离子的剑桥结构数据库(CSD)结构,确定给定金属的电荷赋予能力和密度。结果表明,对于给定的配体类型,金属的大小似乎比其对CN的影响更大。电荷,特别是如果配体是中性的,而对于给定的金属类型,配体的电荷和给体电荷对金属CN的影响似乎大于配体的大小。有趣的是,所有被调查的98种金属阳离子都可以采用除在一个CN中,它们大多数表现出对偶数CN而不是奇数CN的明显偏爱。此外,与CSD中观察到的首选金属CN相比,那些在蛋白质结合位点上的CN通常保持不变。不包括金属的第一和第二配位壳中的氨基酸残基)对结合的金属阳离子没有施加严格的几何限制。

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