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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Versatile coordination behaviour of an asymmetric half-salen ligand bearing a dansyl fluorophore
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Versatile coordination behaviour of an asymmetric half-salen ligand bearing a dansyl fluorophore

机译:带有丹磺酰基荧光团的不对称半salen配体的多能配位行为

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摘要

The coordinative chemistry of the tridentate half-salen ligand 5-(dimethylamino)-N-(2-((2-hydroxybenzylidene)amino)phenyl)naphthalene-1- sulfonamide (H _2L, 1) has been studied by means of an electrochemical method. All of the complexes have been characterised using analytical and spectroscopic techniques. Ligand 1 and two nickel (6 and 7), copper (9), zinc (12) and cadmium (14) metal complexes have been studied by crystallography. Complexes 6 and 7 are octahedral and tetrahedral nickel(ii) complexes, respectively, and both contain an [L] ~(2-) molecule that behaves in an [N _2O] tridentate manner. Nickel(ii) completes its coordination kernel with three water molecules in complex 6, whereas in complex 7 the nickel ion is further bound to a molecule of dansylamine arising from a hydrolysis process. The copper(ii) complex 9 is a monomeric compound that contains a bideprotonated ligand thread and a dimethylsulfoxide molecule coordinated through the sulfur atom. The zinc complex 12 is an unusual pentanuclear cluster compound whose structure consists of four anionic ligand units and two hydroxo anions bound to five zinc(ii) centres. The appearance of the hydroxo anions in this complex provides new evidence for water reduction electrochemically promoted by zinc metal under mild conditions. The cadmium complex 14 is a dimeric compound that comprises two molecules of the anionic ligand and two dimethylsulfoxide molecules. The great structural variety exhibited by all these complexes demonstrates that the introduction of asymmetry in a salen skeleton by incorporating a dansyl pendant increases the versatility of the resulting ligand on coordination. All complexes are luminescent in solution at room temperature in acetonitrile solutions.
机译:三齿半salen配体5-(二甲基氨基)-N-(2-(((2-羟基苄叉基氨基)氨基)苯基)萘-1-磺酰胺(H _2L,1)的配位化学方法。所有的配合物已使用分析和光谱技术进行了表征。通过晶体学研究了配体1和两个镍(6和7),铜(9),锌(12)和镉(14)金属配合物。配合物6和7分别是八面体和四面体镍(ii)配合物,并且都包含以[N _2O]三齿方式表现的[L]〜(2-)分子。镍(ii)用络合物6中的三个水分子完成其配位核,而在络合物7中,镍离子进一步与水解过程中产生的丹磺胺分子结合。铜(ii)配合物9是单体化合物,其包含双质子化的配体线和通过硫原子配位的二甲基亚砜分子。锌络合物12是一种不寻常的五核簇化合物,其结构由四个阴离子配体单元和两个与五个锌(ii)中心键合的羟基阴离子组成。在该络合物中羟基阴离子的出现为锌金属在温和条件下电化学促进的水还原提供了新的证据。镉络合物14是包含两个阴离子配体分子和两个二甲基亚砜分子的二聚化合物。所有这些复合物都展现出巨大的结构多样性,这表明通过掺入丹磺酰基侧基在萨伦骨架中引入不对称性增加了配体在配位时的多功能性。在室温下,在乙腈溶液中,所有络合物均在溶液中发光。

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