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首页> 外文期刊>Zeitschrift fur Anorganische und Allgemeine Chemie >Properties of the magnesium(II) and calcium(II) complexes of 5- and 6-uracilmethylphosphonate (5Umpa(2-) and 6Umpa(2-)) aqueous solution
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Properties of the magnesium(II) and calcium(II) complexes of 5- and 6-uracilmethylphosphonate (5Umpa(2-) and 6Umpa(2-)) aqueous solution

机译:5-和6-尿嘧啶甲基膦酸酯(5Umpa(2-)和6Umpa(2-)水溶液)的镁(II)和钙(II)配合物的性质

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The stability constants of the 1:1 complexes formed between Mg2+ or Ca2+ and 5 Umpa(2-) or 6 Umpa(2-) were determined by potentiometric pH titrations in aqueous solution (25 degreesC. I = 0.1 M, NaNO3). Based on previously established log K-M(R-PO3)(M) versus pK(H(R-PO3))(H) straight-line plots (M2+ = Mg2+ or Ca2+; R-PO32- = simple phosphate monoester or phosphonate ligands where R is a non-interacting residue), it is shown that the Mg(5 Umpa), Ca(5 Umpa), Mg(6 Umpa) and Ca(6 Umpa) complexes have the stability expected on the basis of the basicity of the phosphonate group in 5 Umpa(2-) and 6 Umpa(2-). This means, these Ligands may be considered as simple analogues of nucleotides, e.g. of uridine 5 ' -monophosphate. In the higher pH range deprotonation of the uracil residue in the M(5 Umpa) and M(6 Umpa) complexes occurs and this leads to the negatively charged M(5 Umpa-H)(-) and M(6 Umpa-H)(-) species. Based on the comparison of various acidity constants it is shown that the M(5 Umpa) complexes are especially acidic; or to say it differently, the M(5 Umpa-H)(-) species are especially stable. This increased stability is attributed to the formation of a seven-membered chelate involving next to the phosphonate group also the carbonyl oxygen atom at C4 (after deprotonation of the (N3)H site). The formation degree of this chelated isomer reaches about 45% for the Mg(5 Umpa-H)(-) and Ca(5 Umpa-H)(-) species. No indication for chelate formation was observed for the M(6 Umpa-H)(-) complexes. [References: 18]
机译:Mg2 +或Ca2 +与5 Umpa(2-)或6 Umpa(2-)之间形成的1:1配合物的稳定常数是通过在水溶液(25℃。I = 0.1 M,NaNO3)中通过电位pH滴定法测定的。根据先前建立的对数KM(R-PO3)(M)与pK(H(R-PO3))(H)直线图(M2 + = Mg2 +或Ca2 +; R-PO32- =简单磷酸单酯或膦酸酯配体R是非相互作用的残基),表明Mg(5 Umpa),Ca(5 Umpa),Mg(6 Umpa)和Ca(6 Umpa)配合物具有基于5 Umpa(2-)和6 Umpa(2-)中的膦酸酯基团。这意味着,这些配体可以被认为是核苷酸的简单类似物,例如核苷酸。尿苷5'-单磷酸酯。在较高的pH范围内,M(5 Umpa)和M(6 Umpa)复合物中的尿嘧啶残基发生去质子化,这导致M(5 Umpa-H)(-)和M(6 Umpa-H)带负电荷。 (-)种。根据各种酸度常数的比较,表明M(5 Umpa)络合物尤其是酸性的。换句话说,M(5 Umpa-H)(-)物种特别稳定。这种增加的稳定性归因于七元螯合物的形成,该七元螯合物在膦酸酯基团之后还包括在C4处的羰基氧原子(在(N3)H位去质子化之后)。对于Mg(5 Umpa-H)(-)和Ca(5 Umpa-H)(-)物种,这种螯合异构体的形成度达到约45%。没有观察到螯合物形成的迹象表明M(6 Umpa-H)(-)配合物。 [参考:18]

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