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Neutral (bis-beta-diketonato) iron(III), cobalt(II), nickel(II), copper(II) and zinc(II) metallocycles: structural, electrochemical and solvent extraction studies

机译:中性(bis-beta-diketonato)铁(III),钴(II),镍(II),铜(II)和锌(II)金属环:结构,电化学和溶剂萃取研究

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摘要

Neutral dimeric metallocyclic complexes of type [M2(L1)2Bn] (where M = cobalt(II), nickel(II) and zinc(II), L1 is the doubly deprotonated form of a 1,3-aryl linked bis--diketone ligand of type 1,3-bis(RC(O)CH2C(O))C6H4 (R = Me, n-Pr, t-Bu) and B is pyridine (Py) or 4-ethylpyridine (EtPy)) have been synthesised, adding to similar complexes already reported for copper(II). New lipophilic ligand derivatives with R = octyl or nonyl were also prepared for use in solvent extraction experiments. Structural, electrochemical and solvent extraction investigations of selected metal complex systems from the above series are reported, with the X-ray structures of [Co2(L1)2(Py)4]·2.25CHCl3·0.5H2O (R = Pr), [Co2(L1)2(EtPy)4] (R = t-Bu), [Ni2(L1)2(EtPy)4] (R = t-Bu), [Zn2(L1)2(EtPy)2] (R = Me) and [Zn2(L1)2(EtPy)4] (R = t-Bu) being presented. The electrochemistry of H2L1 (R = t-Bu) and of [Fe2(L1)3], [Co2(L1)2(Py)4], [Ni2(L1)2(Py)4], [Cu2(L1)2] and [Zn2(L1)2(Py)2] has been examined. Oxidative processes for the complexes are dominantly irreversible, but several examples of quasireversible behaviour were observed and support the assignment of an anodic process, seen between +1.0 and +1.6 V, as a metal-centred oxidation. The reduction processes for the respective metal complexes are not simple, and irreversible in most cases. Solvent extraction studies (water/chloroform) involving variable concentrations of metal, bis--diketone and heterocyclic base have been performed for cobalt(II) and zinc(II) using a radiotracer technique to probe the stoichiometries of the extracted species in each case. Synergism was observed when 4-ethylpyridine was added to the bis--diketone ligand in the chloroform phase. Competitive extraction studies show a clear uptake preference for copper(II) over cobalt(II), nickel(II), zinc(II) and cadmium(II).
机译:[M2(L1)2Bn]类型的中性二聚金属环配合物(其中M =钴(II),镍(II)和锌(II),L1是1,3-芳基连接的双-二酮的双去质子化形式)已经合成了1,3-双(RC(O)CH2C(O))C6H4(R = Me,n-Pr,t-Bu)和B为吡啶(Py)或4-乙基吡啶(EtPy)的配体,增加了已经报道的铜(II)的类似络合物。还制备了具有R =辛基或壬基的新的亲脂性配体衍生物,用于溶剂萃取实验。报告了从上述系列中选择的金属配合物系统的结构,电化学和溶剂萃取研究,其X射线结构为[Co2(L1)2(Py)4]·2.25CHCl3·0.5H2O(R = Pr),[ Co2(L1)2(EtPy)4](R = t-Bu),[Ni2(L1)2(EtPy)4](R = t-Bu),[Zn2(L1)2(EtPy)2](R = Me)和[Zn2(L1)2(EtPy)4](R = t-Bu)出现。 H2L1(R = t-Bu)和[Fe2(L1)3],[Co2(L1)2(Py)4],[Ni2(L1)2(Py)4],[Cu2(L1)的电化学2]和[Zn2(L1)2(Py)2]已被检查。络合物的氧化过程主要是不可逆的,但是观察到了一些准可逆行为的例子,它们支持以金属为中心的氧化过程,其阳极电压介于+1.0和+1.6 V之间。各个金属配合物的还原过程并不简单,并且在大多数情况下是不可逆的。已使用放射性示踪技术对钴(II)和锌(II)进行了溶剂萃取研究(水/氯仿),其中涉及浓度可变的金属,双-二酮和杂环碱,以探测每种情况下萃取物种的化学计量。当在氯仿相中将4-乙基吡啶添加到双-二酮配体中时,观察到协同作用。竞争性萃取研究表明,对铜(II)的吸收明显优于钴(II),镍(II),锌(II)和镉(II)。

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