Lee Seok Jong, Park Ki-Min, Yang Kiyull, Kang Youngjin
LG Display Co., Ltd. 642-3, Jinpyung-dong, Gumi Gyungbuk, 730-726, Republic of Korea.
Inorg Chem. 2009 Feb 2;48(3):1030-7. doi: 10.1021/ic801643p.
A blue phosphorescent iridium(III) complex (1) bearing fluorine-substituted bipyridine (dfpypy) has been synthesized and characterized to investigate the effect of the substitution and replacement of the phenyl ring in ppy (phenylpyridine) with pyridine on the solid state structure and its photoluminescence. The optical properties and electrochemical behaviors of 1 have also been systematically evaluated. The structure of 1 has also been determined by a single-crystal X-ray diffraction analysis. There are varied intermolecular interactions caused by the pyridine and fluorine substituents, such as C-H...N, C-H...F, and pi...pi interactions of either face-to-face type or edge-to-face C-H...pi and halogen...pi in crystal packing. In electrochemistry, the remarkably higher oxidation potential than that of FIrpic was observed. The emission lambda(max) of 1 at room temperature is at 438 nm with a higher PL quantum efficiency. Complex 1 exhibits intense blue emission with high color purity (CIE x = 0.14, y = 0.12), which has been attributed to metal-to-ligand charge-transfer triplet emission based on DFT calculations.
合成并表征了一种带有氟取代联吡啶(dfpypy)的蓝色磷光铱(III)配合物(1),以研究用吡啶取代ppy(苯基吡啶)中的苯环对固态结构及其光致发光的影响。还系统评估了1的光学性质和电化学行为。通过单晶X射线衍射分析确定了1的结构。吡啶和氟取代基引起了多种分子间相互作用,例如晶体堆积中的C-H...N、C-H...F以及面对面型或边对面C-H...π和卤素...π的π...π相互作用。在电化学方面,观察到其氧化电位明显高于FIrpic。1在室温下的发射λ(max)为438 nm,具有较高的PL量子效率。配合物1呈现出强烈的蓝色发射且色纯度高(CIE x = 0.14,y = 0.12),基于DFT计算,这归因于金属到配体的电荷转移三重态发射。