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On the Aggregation and Sensing Properties of Zinc(II) Schiff-Base Complexes of Salen-Type Ligands

机译:Salen型配体的锌(II)席夫碱配合物的聚集和传感性质

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摘要

The zinc(II) ion forms stable complexes with a wide variety of ligands, but those related to Schiff-bases are among the most largely investigated. This review deals with the peculiar aggregation characteristics of Zn(II) Schiff-base complexes from tetradentate N2O2 salen-type ligands, L, derivatives from salicylaldehydes and 1,2-diamines, and is mostly focused on their spectroscopic properties in solution. Thanks to their Lewis acidic character, ZnL complexes show interesting structural, nanostructural, and aggregation/deaggregation properties in relation to the absence/presence of a Lewis base. Deaggregation of these complexes is accompanied by relevant changes of their spectroscopic properties that can appropriately be exploited for sensing Lewis bases. Thus, ZnL complexes have been investigated as chromogenic and fluorogenic chemosensors of charged and neutral Lewis bases, including cell imaging, and have shown to be selective and sensitive to the Lewis basicity of the involved species. From these studies emerges that these popular, Lewis acidic bis(salicylaldiminato)Zn(II) Schiff-base complexes represent classical coordination compounds for modern applications.
机译:锌离子与多种配体形成稳定的络合物,但与席夫碱有关的那些是研究最多的化合物。本文综述了四齿N2O2赛伦型配体,水杨醛和1,2-二胺衍生物衍生的Zn(II)Schiff碱配合物的独特聚集特性,并且主要关注它们在溶液中的光谱性质。由于其路易斯酸性特征,ZnL络合物显示出与不存在路易斯碱有关的有趣的结构,纳米结构和聚集/解聚性质。这些复合物的解聚伴随着其光谱性质的相关变化,这些变化可以适当地用于感测路易斯碱。因此,已经对ZnL复合物作为带电和中性路易斯碱的生色和荧光化学传感器进行了研究,包括细胞成像,并显示出对所涉及物种的路易斯碱性具有选择性和敏感性。从这些研究中发现,这些流行的路易斯酸性双(水杨基铝基亚氨基)Zn(II)席夫碱配合物代表了现代应用中的经典配位化合物。

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