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Voltage Reduction of Organic Light-Emitting Device (OLED) with an n-type Organic Material and a Silver Cathode

机译:具有n型有机材料和银阴极的有机发光器件(OLED)的降压

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In this paper, a 1.85V reduction in driving voltage of an OLED is presented by using an alkali-metal doped electron transport layer (ETL) and a silver (Ag) cathode. Such an ETL is composed of 2,9-dimethyl-4,7-diphenyl 1,10-phenanthroline (BCP) doped with Cseium (Cs) to increase the conductivity of the organic material and achieve ohmic contact at the ETL/cathode interface regardless the work function of the cathode material. Ag is used to replace the conventional aluminum as the cathode material due to its lower electrical resistivity and optical absorption in visible range. In our devices, the drive voltage was reduced by 1.45V when using MD technique only. When we change the cathode material from Al to Ag, the driving voltage has a further of 0.4V reduction. In those devices, current efficiency is around 3.3 to 4.1 cd/A at 100 mA/cm~2.That corresponds to an improvement of 53.36% in power efficiency at 10 mA/cm~2.
机译:在本文中,通过使用碱金属掺杂的电子传输层(ETL)和银(Ag)阴极,可以将OLED的驱动电压降低1.85V。这种ETL由掺杂有Csium(Cs)的2,9-二甲基-4,7-二苯基1,10-菲咯啉(BCP)组成,以增加有机材料的电导率并实现ETL /阴极界面处的欧姆接触阴极材料的功函数。由于其较低的电阻率和可见光范围内的光吸收性,Ag被用来代替传统的铝作为阴极材料。在我们的设备中,仅使用MD技术时,驱动电压降低了1.45V。当我们将正极材料从Al更改为Ag时,驱动电压会进一步降低0.4V。在这些器件中,电流效率在100 mA / cm〜2时约为3.3到4.1 cd / A,相当于在10 mA / cm〜2时的功率效率提高了53.36%。

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