首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Further insight into the coordination of 2,5-dicarbothioamidopyrroles: The case of Cu and Co complexes
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Further insight into the coordination of 2,5-dicarbothioamidopyrroles: The case of Cu and Co complexes

机译:对2,5-二硫代氨基酰胺基吡咯的配位的进一步了解:以铜和钴配合物为例

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摘要

The coordination chemistry of 2,5-dicarbothioamidopyrrole ligands, namely N2,N5-dibutyl-3,4-diphenyl-1H-pyrrole-2,5-bis(carbothioamide) and N2,N5,3,4-tetraphenyl-1H-pyrrole-2,5-bis(carbothioamide), has been investigated with Cu(ii) metal centres by means of X-ray crystallography. This resulted in the formation of the expected planar S,N,S′ coordinated complex for the former ligand and unexpected ring-closure reactions, with formation of benzothiazole sidearms, for the latter. Both Cu(ii) and Cu(i), used in large excess, were found to favour the ring-closure reaction, although the structural characterisation of the resulting complexes contained only Cu(ii) cations, with varying coordination geometries ranging from square planar and square-based pyramidal to tetrahedral. By repeating the reaction using a slight excess of Cu(ii) (2:1) two more different structures were obtained where the metal was coordinated to the original ligand, N2,N5,3,4-tetraphenyl-1H-pyrrole-2,5- bis(carbothioamide), or to the mixed ligand where only one of the thioamide substituents had converted to a benzothiazole. The essential role of Cu for the ring closure reaction was also established by comparing its complex with structural features of the analogous Co(ii) complex, the latter revealing no ring closure to give benzothiazole substituents and co-crystallisation of a mixed Co(ii)/Co(iii) complex. Finally, the structure and photophysical properties of the corresponding 3,4-diphenyl-2,5-bis(benzothiozol-5-yl)-pyrrole ligand, obtained via treatment of the thioamide with K3[Fe(CN) _6], were also investigated revealing a blue-centered emission.
机译:N,N2,N5-二丁基-3,4-二苯基-1H-吡咯-2,5-双(碳硫酰胺)和N2,N5,3,4-四苯基-1H-吡咯的2,5-二硫代氨基酰胺基吡咯配体的配位化学-2,5-双(碳硫代酰胺),已通过X射线晶体学与Cu(ii)金属中心进行了研究。这导致前者的配体形成了预期的平面S,N,S'配位配合物,并导致了意想不到的闭环反应,后者形成了苯并噻唑侧臂。发现大量使用的Cu(ii)和Cu(i)都有利于闭环反应,尽管所得配合物的结构特征仅包含Cu(ii)阳离子,且配位几何形状的变化范围为正方形和方形的金字塔形到四面体。通过使用稍微过量的Cu(ii)(2:1)重复反应,获得了另外两个不同的结构,其中金属与原始配体N2,N5,3,4-四苯基-1H-吡咯-2配位, 5-双(碳硫代酰胺),或混合的配体,其中只有一个硫代酰胺取代基已转化为苯并噻唑。通过将铜的络合物与类似的Co(ii)络合物的结构特征进行比较,还确定了Cu在环闭合反应中的重要作用,后者表明没有闭环反应生成苯并噻唑取代基,并且混合Co(ii)共结晶/ Co(iii)复合物。最后,还通过K3 [Fe(CN)_6]处理硫代酰胺获得了相应的3,4-二苯基-2,5-双(苯并噻唑-5-基)-吡咯配体的结构和光物理性质。调查揭示了蓝心发射。

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