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High-Performance Organic Light-Emitting Diodes Based on Intramolecular Charge-Transfer Emission from Donor-Acceptor Molecules: Significance of Electron-Donor Strength and Molecular Geometry

机译:基于给体-受体分子的分子内电荷转移发射的高性能有机发光二极管:电子给体强度和分子几何学的意义

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Organic light-emitting diodes based on intramolecular-charge-transfer emission from two related donor-acceptor (D-A) molecules, 3,7-[bis(4-phenyl-2-quinolyl)]-10-methylphenothiazine (BPQ-MPT) and 3,6-[bis(4-phenyl-2-quinolyl)]-9-methylcarba-zole (BPQ-MCZ), were found to have electroluminescence (EL) efficiencies and device brightnesses that differ by orders of magnitude. High brightness (> 40000 cd m~(-2)) and high efficiency (21.9 cd A~(-1), 10.8 lm W~(-1), 5.78% external quantum efficiency (EQE) at 1140 cd m~(-2)) green EL was achieved from the BPQ-MPT emitter, which has its highest occupied molecular orbital (HOMO) level at 5.09 eV and a nonplanar geometry. In contrast, diodes with much lower brightness (2290 cd m~(-2)) and efficiency (1.4 cd A~(-1), 0.66 lm W~(-1), 1.7% EQE at 405 cd m~(-2)) were obtained from the BPQ-MCZ emitter, which has its HOMO level at 5.75 eV and exhibits a planar geometry. Compared to BPQ-MCZ, the higher-lying HOMO level of BPQ-MPT facilitates more efficient hole injection/transport and a higher charge-recombination rate, while its nonplanar geometry ensures diode color purity. White EL was observed from BPQ-MCZ diodes owing to a blue intramolecular charge-transfer emission and a yellow-orange intermolecular excimer emission, enabled by the planar molecular geometry. These results demonstrate that high-performance light-emitting devices can be achieved from intramolecular charge-transfer emission, while highlighting the critical roles of the electron-donor strength and the molecular geometry of D-A molecules.
机译:基于两个相关的供体受体(DA)分子3,7- [双(4-苯基-2-喹啉基)]-10-甲基吩噻嗪(BPQ-MPT)和两个相关的供体-受体分子的分子内电荷转移发射的有机发光二极管发现3,6- [双(4-苯基-2-喹啉基)]-9-甲基氨基甲酸酯(BPQ-MCZ)具有电致发光(EL)效率,并且器件亮度相差一个数量级。 1140 cd m〜(-)时的高亮度(> 40000 cd m〜(-2))和高效率(21.9 cd A〜(-1),10.8 lm W〜(-1),5.78%外部量子效率(EQE) 2))从BPQ-MPT发射器获得了绿色EL,该发射器在5.09 eV处具有最高的占据分子轨道(HOMO)能级,并且具有非平面几何形状。相反,二极管在405 cd m〜(-2)时具有较低的亮度(2290 cd m〜(-2))和效率(1.4 cd A〜(-1),0.66 lm W〜(-1),1.7%EQE) ))是从BPQ-MCZ发射器获得的,该发射器的HOMO能级为5.75 eV,并显示出平面几何形状。与BPQ-MCZ相比,BPQ-MPT的HOMO含量较高,有助于更有效的空穴注入/传输和更高的电荷复合率,而其非平面几何形状可确保二极管的颜色纯度。从BPQ-MCZ二极管中观察到白色EL,这是由于分子平面内的分子几何形状使分子内的蓝色电荷转移发射和分子间的准分子橙黄色发射。这些结果表明,通过分子内电荷转移发射可以实现高性能的发光器件,同时突出了电子给体强度和D-A分子的分子几何结构的关键作用。

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