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聚集效应:在单炔基鏻铂(II)配合物中使用不同抗衡离子改变固态发射

Aggregation Game: Changing Solid-State Emission Using Different Counterions in Monoalkynylphosphonium Pt(II) Complexes.

作者信息

Paderina Aleksandra, Slavova Sofia, Tupikina Elena, Snetkov Dmitry, Grachova Elena

机构信息

Institute of Chemistry, St Petersburg University, Universitetskii pr. 26, St. Petersburg 198504, Russia.

Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, Sofia 1113, Bulgaria.

出版信息

Inorg Chem. 2024 Sep 23;63(38):17548-17560. doi: 10.1021/acs.inorgchem.4c02130. Epub 2024 Sep 6.

Abstract

Two series of heteroleptic monoalkynylphosphonium Pt(II) complexes decorated with 2,2':6',2''-terpyridine (, series) and 6-phenyl-2,2'-bipyridine (, series) ligands, were prepared and characterized by spectroscopic methods. The complexes obtained exhibit triplet emission in solution, and the characteristics inside the series depend on the nature of the alkynylphosphonium ligand. The description of electronic transitions responsible for energy absorption and emission in discrete Pt(II) complexes was made on the basis of a detailed analysis of the results of DFT calculations, and has shown to involve MLCT, ILCT, and LLCT transitions. The complexes of both series exhibit triplet solid-state luminescence with parameters that also depend on the composition of the complexes, and the analysis of the experimental data indicates the realization of LC, MLCT, MMLCT, and MC transitions due to Pt⋯Pt metallophilic interactions and matrix rigidity. It was shown that the anion variation leads to a significant difference in the photophysical characteristics of the complexes, which exhibit a smooth dependence of the luminescent properties on the anion size. Using quantum chemical modeling, it is demonstrated how the anion size influences the Pt⋯Pt distance in the solid state.

摘要

制备了两系列分别用2,2':6',2''-三联吡啶(系列)和6-苯基-2,2'-联吡啶(系列)配体修饰的异配单炔基鏻铂(II)配合物,并通过光谱方法对其进行了表征。所得到的配合物在溶液中呈现三重态发射,且系列内的特性取决于炔基鏻配体的性质。基于对DFT计算结果的详细分析,对离散铂(II)配合物中负责能量吸收和发射的电子跃迁进行了描述,结果表明涉及MLCT、ILCT和LLCT跃迁。两个系列的配合物均呈现三重态固态发光,其参数也取决于配合物的组成,对实验数据的分析表明由于Pt⋯Pt亲金属相互作用和基质刚性实现了LC、MLCT、MMLCT和MC跃迁。结果表明,阴离子的变化导致配合物的光物理特性存在显著差异,其发光性质对阴离子大小呈现出平滑的依赖性。利用量子化学建模,证明了阴离子大小如何影响固态下的Pt⋯Pt距离。

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