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吡啶三唑配体异构体对三羰基铼配合物电子性质的意想不到的影响:实验和理论的洞察。

The unsuspected influence of the pyridyl-triazole ligand isomerism upon the electronic properties of tricarbonyl rhenium complexes: an experimental and theoretical insight.

机构信息

SPCMIB, CNRS UMR5068, Université Toulouse III Paul-Sabatier, 118 route de Narbonne, 31062 Toulouse cedex 9, France.

出版信息

Dalton Trans. 2018 Jun 19;47(24):8087-8099. doi: 10.1039/c8dt01120f.

Abstract

Two isomeric tricarbonyl rhenium(i) complexes, ReL1 and ReL2, that possess a 2-pyridyl-1,2,n-triazole (pyta) ligand (n = 4 and 3, respectively) connected to a 2-phenylbenzoxazole (PBO) moiety, were synthesized in good yields. The X-ray structures showed that in ReL1 the PBO moiety and the pyta ligand almost form a right angle hindering electron delocalization, while in ReL2 their nearly planar arrangement favors the electron delocalization in the whole organic ligand. Therefore, the nature of the ligand significantly influences the electron distribution in the two complexes, as indicated by the results of TD-DFT calculations. An electrochemical study highlighted that, by comparison with ReL2, the smaller HOMO-LUMO energy gap of ReL1 is in line with its lower first reduction potential. From a spectroscopic viewpoint, both complexes emitted phosphorescence in organic solvents, with distinct color and intensity. They also emitted in the solid state, but only ReL1 showed significant aggregation-induced phosphorescence emission (AIPE). This complete study sheds light on the crucial role of structural isomerism of the triazole group, which has been unsuspected for a long time although it can govern the geometry and electronic properties of rhenium complexes. It is shown for the first time that grafting a non-coordinated π-conjugated fragment on the N(4) atom of a 1,2,4-triazole group can be of high value for the design of efficient light-emitting materials based on rhenium complexes.

摘要

两种手性三羰基铼(i)配合物 ReL1 和 ReL2 被成功合成,它们分别含有一个连接 2-苯基苯并恶唑(PBO)部分的 2-吡啶-1,2,4-三唑(pyta)配体(n 分别为 4 和 3)。X 射线结构表明,在 ReL1 中,PBO 部分和 pyta 配体几乎形成直角,阻碍电子离域,而在 ReL2 中,它们近乎平面的排列有利于整个有机配体中的电子离域。因此,配体的性质显著影响了两个配合物中的电子分布,这一点可以通过 TD-DFT 计算的结果得到证实。电化学研究表明,与 ReL2 相比,ReL1 的 HOMO-LUMO 能隙较小,这与其较低的第一还原电位一致。从光谱学的角度来看,两个配合物在有机溶剂中都发出磷光,颜色和强度都有所不同。它们在固态中也会发光,但只有 ReL1 表现出显著的聚集诱导磷光发射(AIPE)。这项全面的研究揭示了三唑基团结构异构性的关键作用,尽管它可以控制铼配合物的几何形状和电子性质,但长期以来一直被忽视。首次表明,在 1,2,4-三唑基团的 N(4)原子上接枝非配位的π-共轭片段对于设计基于铼配合物的高效发光材料具有重要价值。

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