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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Specificity of the zinc(II), magnesium(II) and calcium(II) complexation by (pyridin-2-yl)aminomethane-1,1-diphosphonic acids and related 1,3-(thiazol-2-yl) and 1,3-(benzothiazol-2-yl) derivatives
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Specificity of the zinc(II), magnesium(II) and calcium(II) complexation by (pyridin-2-yl)aminomethane-1,1-diphosphonic acids and related 1,3-(thiazol-2-yl) and 1,3-(benzothiazol-2-yl) derivatives

机译:(吡啶-2-基)氨基甲烷-1,1-二膦酸和相关的1,3-(噻唑-2-基)和1,络合锌(II),镁(II)和钙(II)的特异性3-(苯并噻唑-2-基)衍生物

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The solution properties of a series of (pyridin-2-yl)aminomethane-1,1-diphosphonic acids 1-4 as well as closely related compounds 5 and 6 with 1,3-thiazolyl or 1,3-benzothiazolyl side chains and their influence on the complexation of Zn(II), Mg(II) and Ca(II) were studied by means of the P-31 and H-1 NMR spectroscopy, pH-potentiometry and ESI-MS methods. The crystal structures of 5 and 6 were determined by X-ray analysis. All the studied compounds exist in solution as mixtures of the Z and E isomers with respect to the C2-N-amino bond. Compounds 1 and 2 exhibit higher overall basicities compared to 3-6 and have exceptionally basic pyridyl nitrogen (pK(2) = 7.88 and 8.18, respectively). Dynamic NMR studies revealed that the nature of the aromatic side chain as well as the specificity and topology of the ring substituent account for the rotational barrier for the Z/E interconversion, which decreases in the order of 1 similar to 2 > 3 similar to 4 5 (6). This is particularly important for aggregational properties of 1-6 in solution and for the complex-formation equilibria. Overall, compounds 1-6 demonstrate a strong tendency for the formation of protonated multinuclear complexes. Their formation is unexpectedly slow on the NMR time scale compared to previously studied bisphosphonate complexes. The stepwise release of protons upon the rise of pH leads to mononuclear species. The Z ligand conformation is preferred in multinuclear complexes of Zn(II), Mg(II) and Ca(II) with 1 and 2 whereas in the case of 3-6 the complexation processes are affected by the intramolecular Z/E interconversion.
机译:一系列(吡啶-2-基)氨基甲烷-1,1-二膦酸1-4以及具有1,3-噻唑基或1,3-苯并噻唑基侧链的密切相关的化合物5和6的溶液性质及其通过P-31和H-1 NMR光谱,pH电位法和ESI-MS方法研究了对Zn(II),Mg(II)和Ca(II)络合的影响。通过X射线分析确定5和6的晶体结构。所有研究的化合物均以Z和E异构体相对于C2-N-氨基键的混合物形式存在于溶液中。与3-6相比,化合物1和2表现出更高的总体碱性,并且具有异常碱性的吡啶基氮(分别为pK(2)= 7.88和8.18)。动态NMR研究表明,芳族侧链的性质以及环取代基的特异性和拓扑结构构成了Z / E互变的旋转势垒,其递减顺序为1类似于2> 3类似于4 5(6)。这对于溶液中1-6的聚集性质以及复合物形成平衡特别重要。总体而言,化合物1-6表现出形成质子化多核复合物的强烈趋势。与先前研究的双膦酸酯络合物相比,它们的形成在NMR时间尺度上出乎意料地缓慢。随着pH值的升高,质子的逐步释放会导致单核物种。 Z配体构型在具有1和2的Zn(II),Mg(II)和Ca(II)的多核络合物中是优选的,而在3-6的情况下,络合过程受分子内Z / E相互转化的影响。

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