Department of Chemistry and Biochemistry, University of California, Los Angeles , 607 Charles E. Young Drive East, Los Angeles, California 90095, United States.
Department of Chemistry, University of Southern California , Los Angeles, California 90089, United States.
J Am Chem Soc. 2016 Dec 7;138(48):15758-15765. doi: 10.1021/jacs.6b10232. Epub 2016 Nov 22.
We report the development of a new class of phosphorescent zwitterionic bis(heteroleptic) Ir(III) compounds containing pyridyl ligands with weakly coordinating nido-carboranyl substituents. Treatment of phenylpyridine-based Ir(III) precursors with C-substituted ortho-carboranylpyridines in 2-ethoxyethanol results in a facile carborane deboronation and the formation of robust and highly luminescent metal complexes. The resulting nido-carboranyl fragments associate with the cationic Ir(III) center through primarily electrostatic interactions. These compounds phosphoresce at blue wavelengths (450-470 nm) both in a poly(methyl methacrylate) (PMMA) matrix and in solution at 77 K. These complexes display structural stability at temperatures beyond 300 °C and quantum yields greater than 40%. Importantly, the observed quantum yields correspond to a dramatic 10-fold enhancement over the previously reported Ir(III) congeners featuring carboranyl-containing ligands in which the boron cluster is covalently attached to the metal. Ultimately, this work suggests that the use of a ligand framework containing a weakly coordinating anionic component can provide a new avenue for designing efficient Ir(III)-based phosphorescent emitters.
我们报告了一类新型磷光型两性双(杂环)Ir(III)化合物的发展,其中含有弱配位的 nido-卡硼烷取代基的吡啶配体。在 2-乙氧基乙醇中,用 C-取代的邻卡硼烷吡啶处理苯并吡啶基 Ir(III)前体,可轻易地进行卡硼烷去硼化反应,并形成坚固且高度发光的金属配合物。所得的 nido-卡硼烷片段通过主要的静电相互作用与阳离子 Ir(III)中心结合。这些化合物在聚甲基丙烯酸甲酯 (PMMA) 基质中和在 77 K 的溶液中均在蓝色波长(450-470nm)处磷光。这些配合物在超过 300°C 的温度下表现出结构稳定性,量子产率大于 40%。重要的是,观察到的量子产率与之前报道的含有卡硼烷配体的 Ir(III)同系物相比有显著提高,后者中的硼簇通过共价键连接到金属上。最终,这项工作表明,使用含有弱配位阴离子成分的配体框架可以为设计高效的 Ir(III)基磷光发光体提供新途径。