首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >POTENTIOMETRY OF THE DIOXA-TRIAZA MACROCYCLIC COMPLEXES AS RECEPTORS FOR FIRST-ROW TRANSITION AND LANTHANIDE METALS
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POTENTIOMETRY OF THE DIOXA-TRIAZA MACROCYCLIC COMPLEXES AS RECEPTORS FOR FIRST-ROW TRANSITION AND LANTHANIDE METALS

机译:二恶英-三氮杂大环化合物作为第一行过渡金属和镧系元素金属的电位计

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The protonation constants and the complex stability constants of 1,7-dioxa-4,10,13-triazacyclopentadecane-4,10,13-tripropionis acid (N-pr(3)[15]ane N3O2 with some first-row transition metals (Co2+, Ni2+, Cu2+, and Zn2+) and lanthanide metals (Ce3+, Eu3+, Gd3+, and Yb3+) have been determined at 25 degrees C in aqueous 0.1 M NaClO4 solution by a potentiometric method. The results obtained are compared to those obtained for a similar ligand, 1,7-dioxa-4,10,13-triazacyclopentadecane-4,10,13-triacetic acid (N-ac(3)[15]ane N3O2, which has been previously reported. The stability constants of lanthanide complexes of N-pr(3)[15]ane N3O2) increase with the decreasing ionic radii of Ln(3+). The order of metal binding strengths with N-pr(3)[15]ant: N3O2 for the first-row transition metals was Ni2+ > Zn2+ > Co2+ > Cu2+, which is obviously reversed from that with N-ac(3)[15]ane N3O2, Cu2+ > Co2+ = Zn2+ > Ni2+. The tendency to the reversal of this trend is rationalized and discussed in terms of the matching of the ligand properties with metal ion characteristics by the use of molecular mechanic calculations. These facts suggest that the structure of a polyoxa-polyaza macrocyclic compound can be preorgnnized by modifying the pendant arms to achieve unique selectivity for a particular metal cation. (C) 1996 Academic Press, Inc. [References: 18]
机译:1,7-二恶英-4,10,13-三氮杂环戊烷-4,10,13-三丙酸(N-pr(3)[15] ane N3O2与一些第一行过渡金属的质子化常数和复杂稳定性常数在25°C下通过电位法在0.1 M NaClO4水溶液中测定了Co2 +,Ni2 +,Cu2 +和Zn2 +(Co2 +,Ni2 +,Cu2 +和Zn2 +)和镧系金属(Ce3 +,Eu3 +,Gd3 +和Yb3 +),并将所得结果与获得的结果进行了比较。相似的配体1,7-二恶英-4,10,13-三氮杂环戊四烷-4,10,13-三乙酸(N-ac(3)[15] ane N3O2,先前已报道。镧系元素的稳定性常数N-pr(3)[15] ane N3O2的配合物随Ln(3+)的离子半径的减小而增加。金属结合强度与N-pr(3)[15] ant:N3O2的顺序为:行过渡金属为Ni2 +> Zn2 +> Co2 +> Cu2 +,与N-ac(3)[15] ane N3O2明显相反,Cu2 +> Co2 + = Zn2 +> Ni2 +,这种趋势的逆转趋势是合理的,并且关于m的讨论通过使用分子力学计算,使配体性质具有金属离子特征。这些事实表明,可以通过修饰悬臂以对特定金属阳离子实现独特的选择性来预聚多氧杂-多氮杂大环化合物的结构。 (C)1996 Academic Press,Inc. [参考:18]

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