Effect of anode and cathode workfunction on the operating voltage and luminance of a single emissive layer organic light emitting diode

A. Udhiarto, Layina Maula Haryanto, Bobi Khoerun, D. Hartanto
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引用次数: 4

Abstract

Organic light emitting diodes (OLED) are considered to be a promising candidate for light sources as well as for flat panel display because of their numerous advantageous. Two important parameters of an OLED among many other parameters to measure OLED performance are operating voltage and luminance. Those two parameters are believed to be strongly influenced by an anode and cathode workfunction of materials used as electrodes. In this paper, we study the effect of anode and cathode workfunction on the operating voltage and luminance of a single emissive layer organic light emitting diode. Devices with five different cathodes: Aluminum (Al), Calcium (Ca), Magnesium (Mg), Argentum (Ar), and Cuprum (Cu) and three different anodes: Indium Thin Oxide (ITO), Poly-(3,4-Ethylenedioxidythiophene)-Poly (Styrene Sulfonate) (PEDOT:PSS), Zinc Oxide (ZnO) are compared and analyzed. A 2 nm thick of Polyfluorene (PFO) is used as an emissive layer. SimOLED is used to simulate and analyze both electrical and optical characteristics. Current voltage luminance (IVL) characteristics are simulated under forward biased from 0 to 10 V. We found that the use of anode with higher workfunction can reduce operating voltage as well as increases device luminance. On the other hand, the use of lower workfunction of cathode can reduce operating voltage however it is not always increasing device luminance. The decrease of the operating voltage by increasing anode workfunction and decreasing cathode workfunction are ascribed to the barrier lowering of the holes and the electrons respectively.
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阳极和阴极功函数对单发射层有机发光二极管工作电压和亮度的影响
有机发光二极管(OLED)由于其众多的优点被认为是光源和平板显示的一个有前途的候选者。在众多测量OLED性能的参数中,两个重要的参数是工作电压和亮度。这两个参数被认为受到用作电极的材料的阳极和阴极功函数的强烈影响。本文研究了阳极和阴极功函数对单发射层有机发光二极管工作电压和亮度的影响。采用铝(Al)、钙(Ca)、镁(Mg)、阿根廷(Ar)和铜(Cu)五种不同阴极和三种不同阳极:氧化铟(ITO)、聚-(3,4-乙烯二氧基噻吩)-聚苯乙烯磺酸盐(PEDOT:PSS)、氧化锌(ZnO)的器件进行了比较和分析。采用2nm厚的聚芴(PFO)作为发射层。SimOLED用于模拟和分析电学和光学特性。模拟了0 ~ 10v正偏下电流电压亮度(IVL)特性。我们发现,使用高功函数的阳极可以降低工作电压,提高器件的亮度。另一方面,使用较低的阴极功函数可以降低工作电压,但并不一定能提高器件的亮度。阳极功函数的增大和阴极功函数的减小导致工作电压的降低,分别归因于空穴和电子势垒的降低。
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