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葫芦[10]脲与杂配铱(III)配合物的结合:合成与光物理表征

Cucurbit[10]uril binding of heteroleptic iridium(iii) complexes: synthesis and photophysical characterization.

作者信息

Alrawashdeh Lubna, Almarabeh Shrouq, Assaf Khaleel I, Day Anthony I, Wallace Lynne, Bani-Atta Suhair A

机构信息

Department of Chemistry, Faculty of Science, The Hashemite University P.O. Box 330127 Zarqa 13133 Jordan

Department of Chemistry, Faculty of Science, Al-Balqa Applied University Al-Salt 19117 Jordan

出版信息

RSC Adv. 2025 Aug 20;15(36):29414-29423. doi: 10.1039/d5ra03425f. eCollection 2025 Aug 18.

Abstract

The supramolecular host-guest interaction between heteroleptic iridium(iii) complexes and cucurbit[10]uril (Q[10]) in an aqueous medium was investigated in this work. Both studied iridium complexes, [Ir(ppy)(bpy-(CHO))] (complex 1) and [Ir(ppy)(bpy-(COOH))] (complex 2), possessed two phenylpyridine ligands and a single R-bipyridine ligand. The formation of the encapsulated species (Q[10]·1 and Q[10]·2) was demonstrated by H NMR and luminescence studies. A significant improvement was observed in the luminescence properties of both iridium complexes (emission intensity, quantum yield and lifetime) upon the addition of Q[10] in an aqueous medium. Results suggested a major effect of the hydrophobic cavity in the destabilization of the MLCT state (lowest excited state) of the iridium complexes. The binding study of both complexes with Q[10] revealed the formation of 1 : 1 and 1 : 2 host-guest species, with the binary complex dominating the emission behavior. The equilibrium between the emitting species was significantly influenced by the temperature, wherein the 1 : 1 inclusion complex was less favorable at elevated temperatures. The effect of pH on the emission profiles of the free and encapsulated iridium complexes was also investigated in this study. Density functional theory (DFT) calculations showed that introducing different substituent groups (CHO and COOH) on the bpy ligand had a negligible effect on the orientation of these complexes within the Q[10] cavity.

摘要

本工作研究了在水介质中杂配铱(III)配合物与葫芦[10]脲(Q[10])之间的超分子主客体相互作用。所研究的两种铱配合物,[Ir(ppy)(bpy-(CHO))](配合物1)和[Ir(ppy)(bpy-(COOH))](配合物2),均含有两个苯基吡啶配体和一个单R-联吡啶配体。通过1H NMR和发光研究证实了包封物种(Q[10]·1和Q[10]·2)的形成。在水介质中加入Q[10]后,两种铱配合物的发光性质(发射强度、量子产率和寿命)均有显著改善。结果表明疏水空腔对铱配合物的MLCT态(最低激发态)失稳有主要影响。两种配合物与Q[10]的结合研究表明形成了1∶1和1∶2的主客体物种,二元配合物主导发射行为。发射物种之间的平衡受温度显著影响,其中1∶1包合物在高温下不太有利。本研究还考察了pH对游离和包封铱配合物发射谱的影响。密度泛函理论(DFT)计算表明,在联吡啶配体上引入不同的取代基(CHO和COOH)对这些配合物在Q[10]腔内的取向影响可忽略不计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9a0/12377034/8568dc0c26e1/d5ra03425f-f1.jpg

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