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Aggregation induced phosphorescence of metal complexes: From principles to applications

机译:聚集诱导的金属络合物的磷光:从原理到应用

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Metal complexes are the prototypes of phosphorescent materials, widely used in a range of optoelectronic and sensing applications. This review reports the most recent and tutorial results in the area of aggregation induced phosphorescence (AIP) of metal complexes, i.e. molecules that are weakly or non-phosphorescent in deaerated fluid solution and whose room temperature phosphorescence is switched on upon aggregation. The examples are divided into two main classes according to the AIP mechanism: (i) rigidification that causes a restriction of intramolecular motions as well as of structural distortion of the phosphorescent excited state and (ii) metallophilic interaction that brings about new electronic transitions compared to the isolated chromophores. The last section is devoted to a special class of molecules and supramolecular systems, in which metal complexation turns on phosphorescence of nearby organic chromophores, so that the metal complex is not directly involved in the phosphorescence process. (C) 2017 Elsevier B.V. All rights reserved.
机译:金属配合物是磷光材料的原型,广泛用于各种光电和传感应用中。这篇综述报告了金属络合物在聚集诱导的磷光(AIP)领域的最新研究成果,即在脱气流体溶液中弱或非磷光的分子,其室温磷光在聚集时会开启。根据AIP机理将这些例子分为两大类:(i)刚性作用,其会限制分子内运动以及磷光激发态的结构畸变;(ii)亲金属相互作用,与分离的发色团。最后一部分专门讨论一类特殊的分子和超分子系统,其中金属络合打开附近有机发色团的磷光,因此金属络合物不直接参与磷光过程。 (C)2017 Elsevier B.V.保留所有权利。

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