Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, Michigan 48109, USA.
Department of Chemistry, University of Southern California, Los Angeles, California 90089, USA.
Nat Mater. 2016 Jan;15(1):92-8. doi: 10.1038/nmat4446. Epub 2015 Oct 19.
The combination of both very high brightness and deep blue emission from phosphorescent organic light-emitting diodes (PHOLED) is required for both display and lighting applications, yet so far has not been reported. A source of this difficulty is the absence of electron/exciton blocking layers (EBL) that are compatible with the high triplet energy of the deep blue dopant and the high frontier orbital energies of hosts needed to transport charge. Here, we show that N-heterocyclic carbene (NHC) Ir(III) complexes can serve as both deep blue emitters and efficient hole-conducting EBLs. The NHC EBLs enable very high brightness (>7,800 cd m(-2)) operation, while achieving deep blue emission with colour coordinates of [0.16, 0.09], suitable for most demanding display applications. We find that both the facial and the meridional isomers of the dopant have high efficiencies that arise from the unusual properties of the NHC ligand-that is, the complexes possess a strong metal-ligand bond that destabilizes the non-radiative metal-centred ligand-field states. Our results represent an advance in blue-emitting PHOLED architectures and materials combinations that meet the requirements of many critical illumination applications.
同时具有超高亮度和深蓝光发射的磷光有机发光二极管(PHOLED),是显示和照明应用所必需的,但迄今为止尚未有报道。造成这种困难的一个原因是缺乏与深蓝光掺杂剂的高三重态能量以及传输电荷所需的主体的高前沿轨道能量兼容的电子/激子阻挡层(EBL)。在这里,我们表明 N-杂环卡宾(NHC)Ir(III)配合物可用作深蓝光发射器和有效的空穴传导 EBL。NHC EBL 可实现超高亮度(>7800 cd/m²)的操作,同时实现颜色坐标为[0.16,0.09]的深蓝光发射,适用于大多数苛刻的显示应用。我们发现,掺杂剂的面式和经式异构体都具有高效率,这源于 NHC 配体的不寻常性质,即配合物具有强的金属-配体键,使非辐射的金属中心配体场态不稳定。我们的结果代表了蓝色发射 PHOLED 架构和材料组合的一项进展,满足了许多关键照明应用的要求。