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Electroluminescence of Polymer/Small-molecules Heterostructure Doped Light-emitting Diodes

机译:聚合物/小分子异质结构掺杂发光二极管的电致发光

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摘要

We have successfully fabricated polymer /organic heterostructure doped light-emitting diodes with high stability and efficiency using a novel poly-TPD(PTPD) as hole transport material and the high fluorescent Rubrene as dopant. The basic structure of the heterostructure is PTPD/Alq_3. The device was doped in the single layer and double layer. The structure of energy bands for doping device was given. Initial voltage, initial luminance, Luminance efficiency, EL quantum efficiency and operational stability under constant current driving as well as turn-on voltage were measured. With the doping of double layers, the EL quantum efficiencies are about 2 times greater than that of the undoped device but the turn-on voltage is increase. Compared the doping device with undoping device and conventional TPD/Alq_3 diode, It is found that a) the durability of the devices with PTPD as HTL is higher than that of the referenced device with TPD as HTL, b) the stability of the doping devices is significantly higher than that of the undoping device and the lifetime for device of doped double layers is the longest.
机译:我们已经成功地使用新型的聚-TPD(PTPD)作为空穴传输材料和高荧光的Rubrene作为掺杂剂,成功地制备了具有高稳定性和效率的聚合物/有机异质结构掺杂发光二极管。异质结构的基本结构是PTPD / Alq_3。该器件以单层和双层掺杂。给出了掺杂装置能带的结构。测量了在恒定电流驱动下的初始电压,初始亮度,发光效率,EL量子效率和操作稳定性以及导通电压。通过双层掺杂,EL量子效率约为未掺杂器件的2倍,但导通电压却增加了。将掺杂设备与不掺杂设备和常规TPD / Alq_3二极管进行比较,发现a)以PTPD为HTL的器件的耐用性高于以TPD为HTL的参考器件的耐用性,b)掺杂器件的稳定性明显高于非掺杂器件的寿命,并且掺杂双层的器件的寿命最长。

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