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Improved organic light-emitting devices with tunable IV by inserting a hole-blocking layer between hole-injecting layer and hole-transporting layer

机译:通过在空穴注入层和空穴输送层之间插入空穴阻挡层来改进具有可调谐IV的有机发光器件

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Insertion of hole-blocking layer (HBL) between the hole-transporting layer (HTL) and hole-injection layer for tris-(8-hydroxyqunoline) aluminum (Alq{sub}3)-based organic light-emitting device is shown to improve the current efficiency by 30%. The improvement was attributed to the better electron-hole balance in the device. Two different organic materials, 2,9-dimethyl-4, 7-diphenylphenanthroline (BCP) and Alq3 were used as HBL. Variation of HBL thickness was shown to adjust the current efficiency with the optimum thickness of 3 nm and 2 nm for BCP and Alq{sub}3, respectively. Reduction of HTL thickness was observed to reduce the operating voltage. For device with BCP HBL, the current efficiency is independent of the HTL thickness, optimum performance was observed for device with BCP and HTL thicknesses of 3 nm and 5 nm, respectively. However for device with Alq{sub}3 HBL the efficiency drops with reduction of HTL. The drop is due to electron leakage, as Alq{sub}3 HBL does not block the electron, whereby the inefficient exciplex emission was observed.
机译:空穴传输层(HTL)和空穴注入层为三 - (8- hydroxyqunoline)铝之间的空穴阻挡层(HBL)({的Alq子} 3)的插入为基础的有机发光装置显示出改善由30%的电流效率。改善归因于设备更好的电子 - 空穴平衡。两种不同的有机材料,2,9-二甲基4,7-diphenylphenanthroline(BCP)的Alq 3和用作HBL。 HBL厚度变化被示出为具有为3nm的最佳厚度和2纳米为BCP和将Alq {子} 3调整电流效率,分别。观察到HTL厚度的降低,可以降低工作电压。用于与BCP HBL装置,电流效率是独立的HTL厚度,观察到与BCP和HTL的分别为3nm和5nm的厚度器件的最佳性能。然而,对于用的Alq {子} 3 HBL装置的效率与降低HTL的下降。的下降是由于电子泄漏,如将Alq {副} 3 HBL不阻挡电子,由此观察到低效激基复合物的排放。

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