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首页> 外文期刊>Australian Journal of Chemistry: A Journal for the Publication of Original Research in All Branches of Chemistry >Macrocyclic ligand design. Structure-function relationships underlying the interaction of zinc(II), cadmium(II), silver(I) and lead(II) with mixed-donor macrocyclic ligands
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Macrocyclic ligand design. Structure-function relationships underlying the interaction of zinc(II), cadmium(II), silver(I) and lead(II) with mixed-donor macrocyclic ligands

机译:大环配体设计。锌(II),镉(II),银(I)和铅(II)与混合施主大环配体相互作用的结构-功能关系

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摘要

An investigation of the interaction of zinc(II), cadmium(II), silver(I) and lead(II) with a series of mixed-donor dibenzo-substituted macrocyclic ligands, incorporating O2N3-, O2N4-, O3N2-, O3N3-, O4N2- and O2N3S-donor sets, has been carried out. The logK values for the respective complexes in 95% methanol (I= 0.1; Et(4)NCiO(4), 25 degrees C) have been determined potentiometrically. All ligands form 1:1 (metal/ligand) complexes with the above metal ions although in isolated cases species of type MLH2+ were also observed. An investigation of the effect of variation of ligand structure on the respective complex stabilities has been carried out and the results compared with those obtained previously for closely related mixed-donor macrocyclic systems. The binding of silver(I) and lead(II) to the 17- and 18-membered O3N2-ligand systems has been assessed in (CD3)(2)SO by means of C-13 n.m.r. spin-lattice relaxation (T-1) studies as well as by observation of the induced chemical shifts of particular ligand resonances on complex formation. Overall, the n.m.r. results correlate well with the observed thermodynamic stabilities of the individual complexes. [References: 30]
机译:锌(II),镉(II),银(I)和铅(II)与一系列混合供体二苯并取代的大环配体的相互作用的研究,O2N3-,O2N4-,O3N2-,O3N3- ,O4N2-和O2N3S-供体组已进行。已通过电位法确定了在95%甲醇(I = 0.1; Et(4)NCiO(4),25摄氏度)中各个配合物的logK值。所有配体与上述金属离子形成1:1(金属/配体)络合物,尽管在个别情况下也观察到了MLH2 +类型的物种。已经进行了配体结构变化对各个复杂稳定性的影响的研究,并且将结果与先前对于紧密相关的混合供体大环系统所获得的结果进行了比较。银(I)和铅(II)与17和18元O3N2-配体系统的结合已通过C-13 n.m.r在(CD3)(2)SO中进行了评估。自旋晶格弛豫(T-1)研究以及通过观察特定配体在复合物形成时的共振引起的化学位移。总体而言结果与观察到的单个复合物的热力学稳定性高度相关。 [参考:30]

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