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芴修饰的铱(III)配合物:合成、光物理性质及聚集态下可调谐的三重激发态性质

Fluorene-decorated Ir(III) complexes: synthesis, photophysics and tunable triplet excited state properties in aggregation.

作者信息

Zhu Senqiang, Pan Qianqian, Li Yuhao, Liu Wenqing, Liu Rui, Zhu Hongjun

机构信息

School of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing 211816, China.

Institute of Bismuth and Rhenium, School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China.

出版信息

Dalton Trans. 2022 Sep 13;51(35):13322-13330. doi: 10.1039/d2dt01592g.

Abstract

Two new heteroleptic cationic Ir(III) complexes bearing benzothiazole and pyridine motifs on fluorene groups were synthesized and characterized. Complexes Ir1 and Ir2 exhibit π,π* transitions below 430 nm, with broad but weak metal-to-ligand and ligand-to-ligand charge transfer absorption bands above 430 nm. Both complexes possess long-lived emissions ( = 0.37 s for Ir1, = 5.41 s for Ir2) and triplet excited states ( = 0.14 s for Ir1, = 6.06 s for Ir2). Their optical properties in solution and aggregated states were also investigated. Both Ir(III) complexes exhibit aggregation-induced phosphorescence emission behavior in an acetonitrile-water mixture. As the water content increased to 90%, the emission intensities of complexes Ir1 and Ir2 increased nearly 3 times and 2.8 times, respectively. Moreover, nonlinear transmittance experiments were performed in CHCN and a CHCN-HO mixture ( = 90%), and the strength of the reverse saturable absorption (RSA) at 532 nm followed the trend: Ir2 (CHCN) ≥ Ir1 (CHCN) > Ir2 (CHCN-HO) > Ir1 (CHCN-HO). Abundant triplet state excitons participated in the radiative transition progress, which inhibited the RSA process. These results indicate that the fluorene-decorated Ir(III) complexes are suitable for aggregation emission and optical power limiting applications.

摘要

合成并表征了两种在芴基上带有苯并噻唑和吡啶基序的新型异配阳离子铱(III)配合物。配合物Ir1和Ir2在430 nm以下呈现π,π*跃迁,在430 nm以上有宽而弱的金属到配体和配体到配体的电荷转移吸收带。两种配合物都具有长寿命发射(Ir1为0.37 s,Ir2为5.41 s)和三重激发态(Ir1为0.14 s,Ir2为6.06 s)。还研究了它们在溶液和聚集态下的光学性质。两种铱(III)配合物在乙腈-水混合物中均表现出聚集诱导磷光发射行为。随着水含量增加到90%,配合物Ir1和Ir2的发射强度分别增加了近3倍和2.8倍。此外,在CHCN和CHCN-H₂O混合物(φ = 90%)中进行了非线性透过率实验,532 nm处的反向饱和吸收(RSA)强度遵循以下趋势:Ir2(CHCN)≥Ir1(CHCN)>Ir2(CHCN-H₂O)>Ir1(CHCN-H₂O)。大量的三重态激子参与了辐射跃迁过程,这抑制了RSA过程。这些结果表明,芴修饰的铱(III)配合物适用于聚集发射和光功率限制应用。

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