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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Influence of para substituents in controlling photophysical behavior and different non-covalent weak interactions in zinc complexes of a phenol based 'end-off' compartmental ligand
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Influence of para substituents in controlling photophysical behavior and different non-covalent weak interactions in zinc complexes of a phenol based 'end-off' compartmental ligand

机译:对位取代基在控制光物理行为和基于酚的“末端”区室配体的锌配合物中不同的非共价弱相互作用中的影响

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摘要

Three dinuclear zinc(II) complexes with "end-off" compartmental ligands, namely 2,6-bis(N-ethylmorpho-line-iminomethyl)-4-R-phenol (R = -CH3, Cl, Bu-t) have been synthesized with the aim of exploring the role of the para substituent present in the ligand backbone in controlling the structural diversity, photophysical properties and different weak interactions of the complexes. All three species, with the general formula {2[Zn2L(CH3COO)(2)][Zn(NCS)(4)]}, show the complex anion Zn(NCS)(4)(2-) as a common structural feature decisive for crystallization. Interestingly, all of them possess several non-covalent weak interactions where the nature of the "R" group plays an essential role as exposed by DFT study. Besides exhibiting fluorescence behavior, the complexes also show para substitution controlled phosphorescence both at room and low temperature. Anisotropy studies suggest the existence of complexes 2 and 3 as dimers in solution. The origins of the unusual room temperature phosphorescence and fluorescence behavior of the complexes have been rationalized in the light of theoretical calculations.
机译:具有“终止”区室配体的三个双核锌(II)配合物,即2,6-双(N-乙基吗啉-亚氨基甲基)-4-R-苯酚(R = -CH3,Cl,Bu-t)合成目的在于探索配体主链中存在的对位取代基在控制结构多样性,光物理性质和配合物的不同弱相互作用中的作用。具有通式{2 [Zn2L(CH3COO)(2)] [Zn(NCS)(4)]}的所有这三种物质均显示复合阴离子Zn(NCS)(4)(2-)为常见结构特征决定性的结晶。有趣的是,它们都具有几种非共价的弱相互作用,其中DFT研究表明“ R”基团的性质起着至关重要的作用。除了表现出荧光行为外,该复合物在室温和低温下也都显示出对位取代控制的磷光。各向异性研究表明,溶液2和3中都存在二聚体。根据理论计算,已合理化了配合物异常室温磷光和荧光行为的起源。

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