Sutton Gregory D, Choung Ku Sun, Marroquin Karen, Teets Thomas S
University of Houston, Department of Chemistry, 3585 Cullen Blvd., Room 112, Houston, TX 77204-5003, USA.
Dalton Trans. 2020 Oct 21;49(39):13854-13861. doi: 10.1039/d0dt02690e. Epub 2020 Oct 2.
Presented here is a new class of supramolecular cyclometalated Ir(iii) complexes. The 2 : 1 assemblies include two phosphorescent cyclometalated Ir(iii) centers spanned by a BODIPY bridge with pyridine substituents at the β-pyrrole positions. The three complexes, which vary with respect to the cyclometalating ligand on iridium, are prepared via a simple one-pot procedure, with the target complexes isolated in 31-75% yield. The photophysics of these new compounds are described in detail. All complexes are strongly photoluminescent, with fluorescence from BODIPY being the dominant emission pathway. One member of the series has a near-unity photoluminescence quantum yield, significantly enhanced relative to the free BODIPY. The cyclometalating ligand on iridium controls the energy of the Ir-centered triplet excited state, but in all cases energy transfer from the Ir centers to the BODIPY quenches almost all phosphorescence. This work outlines a new, simple synthetic method for accessing supramolecular complexes.
本文介绍了一类新型的超分子环金属化铱(III)配合物。2:1组装体包括两个由BODIPY桥连接的磷光环金属化铱(III)中心,该桥在β-吡咯位置带有吡啶取代基。这三种配合物在铱上的环金属化配体不同,通过简单的一锅法制备,目标配合物的分离产率为31-75%。详细描述了这些新化合物的光物理性质。所有配合物都具有强烈的光致发光,其中来自BODIPY的荧光是主要的发射途径。该系列中的一个成员具有接近1的光致发光量子产率,相对于游离BODIPY有显著提高。铱上的环金属化配体控制着以铱为中心的三重激发态的能量,但在所有情况下,从铱中心到BODIPY的能量转移几乎淬灭了所有磷光。这项工作概述了一种获取超分子配合物的新的简单合成方法。