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Theoretical design of phosphorescence parameters for organic electro-luminescence devices based on iridium complexes

机译:基于铱配合物的有机电致发光器件磷光参数的理论设计

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Tithe-dependent density functional theory with quadratic response methodology is used in order to calculate and compare spin-orbit coupling effects and the main mechanism of phosphorescence of the neutral Ir(ppy)(3) and cationic [Ir(bpy)(3)](3+) tris-iridium compounds, [Ir(ppy)(2)(bpy)](+) and [Ir(2-phenylpyridine)(2)(4,4'-tert-butyl-2,2'-bipyridine](+) complexes, including also the recently synthesised [Ir(2-phenylpyridine)(2)(4,4'-dimethylamino-2,2'-bipyridine](+) and [Ir(2,4-difluorophenylpyridine)(2)(4,4'-dimethylamino-2,2'-bipyridine](+ ) dyes, where ppy = 2-phenylpyridine and bpy = 2,2'-bipyridine ligands. Comparison with the symmetric, lighter and more studied [Ru(bpy)(3)](2+) and [Rh(bpy)(3)](3+) complexes is also resented. Variations in lifetimes for Ir(ppy)(3) and [Ir(bpy)(3)](3+) dyes as well as for the mixed cationic complexes are well reproduced by the quadratic response method. All the ortho-metalated iridium compounds exhibit strong phosphorescence, which is used in organic light-emitting diodes (OLEDs) to overcome the efficiency limit imposed by the formation of triplet excitons. The results from the first principle theoretical analysis of phosphorescence have helped to clarify the connections between the main features of electronic structure and the photo-physical properties of the studied heavy organometallic OLED materials.
机译:为了计算和比较自旋-轨道耦合效应以及中性Ir(ppy)(3)和阳离子[Ir(bpy)(3)]的磷光的主要机理,使用了基于二次响应法的依赖于铁的密度泛函理论。 (3+)三铱化合物,[Ir(ppy)(2)(bpy)](+)和[Ir(2-苯基吡啶)(2)(4,4'-叔丁基-2,2'-联吡啶](+)配合物,还包括最近合成的[Ir(2-苯基吡啶)(2)(4,4'-二甲基氨基-2,2'-联吡啶](+)和[Ir(2,4-二氟苯基吡啶) (2)(4,4'-二甲基氨基-2,2'-联吡啶](+)染料,其中ppy = 2-苯基吡啶和bpy = 2,2'-联吡啶配体。与对称,轻和研究较多的[还指出了Ru(bpy)(3)](2+)和[Rh(bpy)(3)](3+)配合物Ir(ppy)(3)和[Ir(bpy)(3 )](3+)染料以及用于混合阳离子络合物的染料均能通过二次响应法很好地复制,所有的金属化铱化合物都具有很强的磷光性,可用于orga nic发光二极管(OLED)克服了三重态激子形成所带来的效率极限。磷光的第一原理理论分析的结果有助于阐明电子结构的主要特征与所研究的重有机金属OLED材料的光物理性质之间的联系。

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