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Electrical and optical properties of light emitting devices with quantum dots dispersed in PVK matrix

机译:具有量子点分散在PVK矩阵中的光发射器件的电气和光学性质

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In this study, we fabricated QD-LEDs with QD emitters dispersed in poly(9-vinylcarbazole) (PVK) matrix. The emission layer was prepared by spin-coating of the PVK solution dispersed with red QD nanoparticles. The concentration of QDs was varied to be 0.5, 2.0, 5.0, and 10.0 mg/ml in PVK solution of 25 mg/ml. As the QD concentration increases, the current efficiency of QD-LED gradually increases and the emission from PVK matrix decreases. In addition, we investigated energy transfer system with QD and organic dopant material using same structure in emissive layer. We obtained a maximum current efficiency of 4.1 cd/A and an external quantum efficiency of 3.0% were achieved at a QD concentration of 5.0 mg/ml in QD-LEDs.
机译:在这项研究中,我们用分散在聚(9-乙烯基咔唑)(PVK)基质中的QD发射器制造QD-LED。 通过分散用红QD纳米颗粒分散的PVK溶液旋涂制备发光层。 QD浓度在25mg / ml的PVK溶液中变化为0.5,2.0,5.0和10.0mg / ml。 随着QD浓度的增加,QD-LED的电流效率逐渐增加,并且PVK基质的发射降低。 此外,我们通过在发光层中使用相同结构调查了具有QD和有机掺杂剂的能量转移系统。 我们获得的最大电流效率为4.1cd / a,在QD-LED中以5.0mg / ml的QD浓度达到3.0%的外量子效率。

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