Kubota Koji, Endo Tsubura, Ito Hajime
Division of Applied Chemistry and Frontier Chemistry Center, Faculty of Engineering, Hokkaido University Sapporo Hokkaido Japan
Institute for Chemical Reaction Design and Discovery (WPI-ICReDD), Hokkaido University Sapporo Hokkaido Japan.
Chem Sci. 2024 Jan 21;15(9):3365-3371. doi: 10.1039/d3sc05796h. eCollection 2024 Feb 28.
Tris-cyclometalated iridium(iii) complexes have received widespread attention as attractive prospective materials for , organic light-emitting diodes (OLEDs), photoredox catalysts, and bioimaging probes. However, their preparation usually requires prolonged reaction times, significant amounts of high-boiling solvents, multistep synthesis, and inert-gas-line techniques. Unfortunately, these requirements represent major drawbacks from both a production-cost and an environmental perspective. Herein, we show that a two-step mechanochemical protocol using ball milling enables the rapid and efficient synthesis of various tris-cyclometalated iridium(iii) complexes from relatively cheap iridium(iii) chloride hydrate without the use of significant amounts of organic solvent in air. Notably, a direct one-pot procedure is also demonstrated. The present solid-state approach can be expected to inspire the development of cost-effective and timely production methods for these valuable iridium-based complexes, as well as the discovery of new phosphorescent materials, sensors, and catalysts.
三(环金属化)铱(III)配合物作为有机发光二极管(OLED)、光氧化还原催化剂和生物成像探针等有吸引力的潜在材料受到了广泛关注。然而,它们的制备通常需要较长的反应时间、大量的高沸点溶剂、多步合成以及惰性气体管路技术。不幸的是,从生产成本和环境角度来看,这些要求都存在重大缺陷。在此,我们表明,使用球磨的两步机械化学方法能够在空气中从相对便宜的水合氯化铱(III)快速高效地合成各种三(环金属化)铱(III)配合物,而无需使用大量有机溶剂。值得注意的是,还展示了一种直接的一锅法。预计这种固态方法将激发这些有价值的铱基配合物的经济高效且及时的生产方法的开发,以及新型磷光材料、传感器和催化剂的发现。