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Transition metal based supramolecular systems: synthesis, photophysics, photochemistry and their potential applications as luminescent anion chemosensors

机译:基于过渡金属的超分子系统:合成,光物理,光化学及其作为发光阴离子化学传感器的潜在应用

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This review describes our recent research results on several transition-metal based supramolecular systems. A number of self-assembly metallocyclophanes and cages have been prepared. We have found that the photophysical properties of these systems are highly dependent on the nature of the bridging ligands and that many of these metallocyclophanes and cages are capable of binding different guest molecules such as inorganic anions and a variety of aromatic compounds. Moreover, trinuclear (diimine) rhenium(Ⅰ) tricarbonyl complexes linked by a stilbene-like ligand exhibit most interesting photoswitching features, where the luminescence from the complexes can be switched on and off by photoinduced ligand isomerization. In addition, a structurally simple and easily synthesized luminescent anion receptor has been recently developed and it displays outstanding sensitivity and selectivity toward anionic species. We also review the synthesis of two shape-persistent hexagonal phenylacetylenes and their use as ligands to synthesize dinuclear transition-metal complexes. The photophysical properties of both phenylacetylenic ligands and their corresponding metal complexes are summarized.
机译:这篇综述描述了我们对几种基于过渡金属的超分子系统的最新研究成果。已经制备了许多自组装的金属环烷和笼。我们已经发现,这些系统的光物理性质高度依赖于桥接配体的性质,并且这些金属环烷酮和笼中的许多能够结合不同的客体分子,例如无机阴离子和多种芳族化合物。此外,由二苯乙烯样配体连接的三核(二亚胺)rh(Ⅰ)三羰基配合物表现出最令人感兴趣的光开关特性,其中通过光诱导的配体异构化可以打开和关闭来自配合物的发光。另外,近来已经开发了结构简单且易于合成的发光阴离子受体,并且其显示出对阴离子种类的优异的敏感性和选择性。我们还审查了两个形状持久性六边形苯基乙炔的合成及其作为配体合成双核过渡金属配合物的用途。总结了苯乙炔配体及其相应的金属配合物的光物理性质。

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