Department of Chemistry , Durham University , South Road , Durham DH1 3LE , U.K.
State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry , Jilin University , Changchun 130012 , People's Republic of China.
Inorg Chem. 2018 Oct 15;57(20):12836-12849. doi: 10.1021/acs.inorgchem.8b02034. Epub 2018 Sep 26.
The application of a chiral auxiliary ligand to control the diastereoselectivity in the synthesis of a cyclometalated iridium(III) complex is presented. The diastereomeric iridium(III) complexes 1a and 1b are reported, in which a phenoxyoxazoline auxiliary ligand incorporates a chiral center functionalized with a pendant pentafluorophenyl group. The diastereomers were readily separated, and their structural, electrochemical and photophysical properties are discussed. Solution-state NMR data and X-ray crystal structures establish that the pentafluorophenyl group engages in intramolecular π-π interactions. The X-ray analysis reveals that the two diastereomers display very different modes of intramolecular stacking. The variable-temperature F NMR data indicate that rotation of the pendant pentafluorophenyl rings in 1b and 1a is a temperature-dependent process and that there is a smaller energy barrier to rotation in 1b in comparison to 1a. This correlates with variable-temperature photoluminescence data, which show that upon heating the integrated emission intensity is reduced substantially more for 1b than for 1a, which is ascribed to the enhanced rotation in 1b, providing a more easily populated nonradiative pathway in comparison to 1a. These experimental data are supported by computational calculations. Phosphorescent organic light-emitting devices (PhOLEDs) using 1a as the dopant complex give blue-green emission with a high maximum external quantum efficiency (EQE) of 25.8% (at ca. 270 cd m) and with a low efficiency roll-off to 24.9% at 1000 cd m. Our results extend the scope of ligand design for cyclometalated iridium complexes which possess interesting structural and emission properties.
手性辅助配体在控制环金属铱(III)配合物的非对映选择性合成中的应用。报道了两种非对映异构体的铱(III)配合物 1a 和 1b,其中苯氧基噁唑啉辅助配体包含一个手性中心,其功能化有一个带有五氟苯基的侧链。非对映异构体很容易分离,并对它们的结构、电化学和光物理性质进行了讨论。溶液态 NMR 数据和 X 射线晶体结构表明,五氟苯基基团参与了分子内的π-π相互作用。X 射线分析表明,两种非对映异构体显示出非常不同的分子内堆积方式。变温 F NMR 数据表明,1b 和 1a 中侧链五氟苯基环的旋转是一个温度依赖的过程,并且 1b 中旋转的能垒比 1a 小。这与变温光致发光数据相吻合,该数据表明,在加热过程中,1b 的积分发射强度比 1a 显著降低,这归因于 1b 中增强的旋转,与 1a 相比,提供了一条更容易占据的非辐射途径。这些实验数据得到了计算计算的支持。使用 1a 作为掺杂配合物的磷光有机发光器件 (PhOLEDs) 给出了蓝绿色发射,最大外量子效率 (EQE) 高达 25.8%(约 270 cd m),在 1000 cd m 时效率滚降至 24.9%。我们的结果扩展了具有有趣结构和发射性质的环金属铱配合物的配体设计范围。