M.V. Lomonosov Moscow State University, 1/3 Leninskye Gory, Moscow 119991, Russia.
Dalton Trans. 2018 Nov 22;47(45):16350-16357. doi: 10.1039/c8dt02911c.
To develop the recently proposed approach toward host selection for lanthanide-based emitters, four phosphine oxides PO = PO1-PO4 were investigated which are able to both increase the electron mobility and to sensitize terbium luminescence. New highly soluble and brightly luminescent terbium complexes TbCl3(PO)·H2O and Tb(pobz)3(PO)·(CH3)2CO (pobz- = phenoxybenzoate) with a quantum yield of up to 100% were synthesized and thoroughly characterized. To study the electroluminescence properties of these materials, a series of solution-processed OLED devices were fabricated and their heterostructures were selected based on the HOMO and LUMO energies of PO1-PO4, which were carefully assessed by the combination of DFT and TDDFT methods. Thus, the effectiveness of the proposed approach was proved, and the influence of the anionic ligand was shown. The maximum OLED luminance reached 75 Cd m-2, which is a high value for solution-processed OLEDs based on terbium complexes.
为了开发最近提出的镧系元素发射体的宿主选择方法,我们研究了四种能够提高电子迁移率并敏化铽发光的膦氧化物 PO = PO1-PO4。我们合成了新型高溶解性和高亮度的铽配合物 TbCl3(PO)·H2O 和 Tb(pobz)3(PO)·(CH3)2CO(pobz- = 苯氧苯甲酸),量子产率高达 100%。为了研究这些材料的电致发光性能,我们制备了一系列溶液处理的 OLED 器件,并根据 PO1-PO4 的 HOMO 和 LUMO 能量选择了它们的异质结构,这些能量是通过 DFT 和 TDDFT 方法的组合仔细评估的。因此,证明了所提出方法的有效性,并显示了阴离子配体的影响。最大 OLED 亮度达到 75 Cd m-2,这对于基于铽配合物的溶液处理 OLED 来说是一个很高的值。