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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Stability and kinetics of the acid-promoted decomposition of Cu(II) complexes with hexaazacyclophanes: kinetic studies as a probe to detect changes in the coordination mode of the macrocycles
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Stability and kinetics of the acid-promoted decomposition of Cu(II) complexes with hexaazacyclophanes: kinetic studies as a probe to detect changes in the coordination mode of the macrocycles

机译:酸促进的Cu(II)与六氮杂环烷配合物分解的稳定性和动力学:动力学研究作为探测大环配位模式变​​化的探针

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The synthesis, protonation and Cu(II) coordination features of the novel azacyclophane type receptors 2,6,10,13,17,21-hexaza[22]-(2,6)-pyridinophane (L~2), 2,6,9,12,15,19-hexaza[20]-(2,6)-pyridinophane (L~5) and 2,6,9,12,15,19-hexaza[20]metacyclophane (L~6) are presented. The protonation and Cu(II) constants are analysed and compared with the previously reported open-chain polyamines 4,8,11,15-tetrazaoctadecane-1,18-diamine (L~1) and 4,7,10,13-tetraazahexadecane-1,16-diamine (L~4) and of the cyclophane 2,6,10,13,17,21-hexaaza[22]paracyclophane (L~3). All the systems form mono- and dinuclear complexes whose stability and pH range of existence depend on the type of hydrocarbon chains and molecular topology. The effects of the cyclic or open-chain nature and of the presence of the pyridine rings on the protonation and formation of mono- and dinuclear complexes are discussed. Stopped-flow kinetic measurements on the acid-promoted decomposition of the Cu(II) complexes have been carried out for the different systems. With respect to the decomposition of the dinuclear complexes, because the size of the macrocycles forces both metal ions to be close to each other, the release of the first ion occurs within the mixing time of the stopped-flow except for the dinuclear complexes of L2. However, the most interesting kinetic result is the observation of different kinetics of decomposition for the different mononuclear complexes formed by a given ligand. This effect is especially evident for L3 and L6 and indicates a change in the coordination mode of the ligand for the different mononuclear species. Therefore the Cu(II) ion performs a slippage motion through the macrocyclic cavity driven by pH changes. The stopped-flow experiments are an excellent tool to detect these slippage processes that may be present for the complexes with other macrocycles.
机译:新型氮杂环烷类受体2,6,10,13,17,21-hexaza [22]-(2,6)-吡啶py(L〜2),2,6的合成,质子化和Cu(II)配位特征,9,12,15,19-六氮杂[20]-(2,6)-吡啶oph(L〜5)和2,6,9,12,15,19-六氮杂[20]亚甲基环(L〜6)是呈现。分析了质子化常数和Cu(II)常数,并将其与先前报道的开链多胺4,8,11,15-四氮杂十八烷-1,18-二胺(L〜1)和4,7,10,13-四氮杂十六烷进行比较-1,16-二胺(L〜4)和环烷2,6,10,13,17,21-六氮杂[22]对环烷(L〜3)。所有系统形成单核和双核配合物,其稳定性和存在的pH范围取决于烃链的类型和分子拓扑。讨论了环状或开链性质以及吡啶环的存在对单核和双核复合物质子化和形成的影响。对于不同的系统,已经进行了酸促进的Cu(II)配合物分解的停止流动动力学测量。关于双核配合物的分解,由于大环的大小迫使两种金属离子彼此靠近,因此除了L2的双核配合物外,在停止流的混合时间内发生了第一离子的释放。 。然而,最有趣的动力学结果是观察由给定配体形成的不同单核络合物的不同分解动力学。该效应对于L3和L6尤其明显,并且表明了不同单核物质的配体配位模式的变化。因此,Cu(II)离子在pH值变化的驱动下通过大环腔进行滑动运动。停流实验是检测这些滑移过程的极好工具,这些滑移过程可能与其他大环化合物形成复合物。

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