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首页> 外文期刊>Chemistry: A European journal >Convergent Modulation of Singlet and Triplet Excited States of Phosphine-Oxide Hosts through the Management of Molecular Structure and Functional-Group Linkages for Low-Voltage-Driven Electrophosphorescence
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Convergent Modulation of Singlet and Triplet Excited States of Phosphine-Oxide Hosts through the Management of Molecular Structure and Functional-Group Linkages for Low-Voltage-Driven Electrophosphorescence

机译:通过控制低电压驱动的电致磷光分子的结构和功能基团的连接,对磷氧化物宿主的单重态和三重态激发态进行会聚调制。

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摘要

The controllable tuning of the excited states in a series of phosphine-oxide hosts (DPExPOCzn) was realized through introducing carbazolyl and diphenylphosphine-oxide (DPPO) moieties to adjust the frontier molecular orbitals, molecular rigidity, and the location of the triplet excited states by suppressing the intramolecular interplay of the combined multi-insulating and meso linkage. On increasing the number of substituents, simultaneous lowering of the first singlet energy levels (S_1) and raising of the first triplet energy levels (T_1, about 3.0 eV) were achieved. The former change was mainly due to the contribution of the carbazolyl group to the HOMOs and the extended conjugation. The latter change was due to an enhanced molecular rigidity and the shift of the T_1 states from the diphenylether group to the carbazolyl moieties. This kind of convergent modulation of excited states not only facilitates the exothermic energy transfer to the dopants in phosphorescent organic light-emitting diodes (PHOLEDs), but also realizes the fine-tuning of electrical properties to achieve the balanced carrier injection and transportation in the emitting layers. As the result, the favorable performance of blue-light-emitting PHOLEDs was demonstrated, including much-lower driving voltages of 2.6 V for onset and 3.0 V at 100 cdm~(-2), as well as a remarkably improved E.Q.E. of 12.6%.
机译:通过引入咔唑基和二苯基膦氧化物(DPPO)部分来调节前沿的分子轨道,分子刚度和三重激发态的位置,可以实现一系列膦氧化物主体(DPExPOCzn)中激发态的可控调节。抑制多重绝缘和内消旋结合的分子内相互作用。随着取代基数目的增加,同时降低了第一单重态能级(S_1)和提高了第一三重态能级(T_1,约3.0eV)。前者的变化主要是由于咔唑基对HOMO的贡献和扩展的共轭作用。后者的变化归因于增强的分子刚性和T_1状态从二苯醚基向咔唑基部分的转移。这种激发态的会聚调制不仅促进了放热能转移到磷光有机发光二极管(PHOLED)中的掺杂剂上,而且还实现了电学性能的微调,以实现发光中平衡的载流子注入和输运。层。结果证明了发蓝光的PHOLED的良好性能,包括启动时的2.6 V和100 cdm〜(-2)时的3.0 V更低的驱动电压,以及显着改善的E.Q.E. 12.6%。

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