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The Study of Working Mechanism of Organic Heterojunction Charge Generation Layer

机译:有机异质结电荷产生层的工作机理研究

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The tandem organic light-emitting diodes (tandem OLEDs), which having two or more electroluminescence (EL) units vertically stacked in series through charge generation layer (CGL), were widely used in flat-panel displays and solid state lighting because of their advantages of enhanced current efficiency and luminance at low current densities, as well as their prolonged lifetime as compared to the conventional single-unit devices. In a tandem OLEDs, the CGLs play an important role, serving as the charge generation layer, and it is critical for the performance of tandem OLEDs. It is the basis of fabrication high-efficiency tandem OLEDs to deeply understand the working mechanism of CGL. Organic heterojunctions (OHJs) layers are frequently used as CGLs in the construction of high-efficiency tandem OLEDs. In order to understand the working mechanism of organic heterojunctions CGLs, the device with the structure of glass/ITO/tris (8-hydroxyquino line) aluminium (Alq_3) (60 nm)/C_(60)(x nm)/pentacene((40-x) nm)/N,N'-bis(naphthalen-l-yl)-N,N'-bis(phenyl)-benzidine (NPB) (40 nm)/Al (100 nm) were successfully fabricated, here the organic heterojunction C_(60)/pentacene was used as CGL. The experiment results demonstrated that the organic heterojunction CGL with the structure of C_(60) (15 nm)/pentacene (25 nm) with the most effective charge generation ability. By analyzing the carrier transport characteristics in device, the device current can be attributed to the organic heterojunction CGL. Finally, by numerically analyzing the current-voltage (J-V) characteristics of devices, the results showed the charge generation mechanism of organic heterojunction was in accord with quantum tunneling process. The obtained results can help ones deeply understand the working mechanism of organic heterojunction CGLs and fabricate high-efficiency OLEDs.
机译:的层压型有机发光二极管(串联的OLED),其具有两个或多个电致发光(EL)单元垂直堆叠在通过电荷产生层(CGL)系列,进行了广泛地应用于的,因为它们的优点的平板显示器和固态照明的增强的电流效率和亮度在低电流密度,以及它们的长寿命相比于传统的单单元器件作为。在串联的OLED,该CGLS发挥重要的作用,作为电荷产生层,它是串联式OLED的性能至关重要。它是制造高效率的串联OLED的基础上,深刻领会CGL的工作机制。有机异质结(OHJs)层被经常用作高效率的串联OLED的结构CGLS。为了理解的有机异质结CGLS的工作机制,以玻璃/ ITO /三(8- hydroxyquino线)铝的结构(Alq_3)(60纳米)/ C_(60)(X纳米)/并五苯装置(( 40-x)的纳米)/ N,N'-二(萘-1-基)-N,N'-双(苯基) - 联苯胺(NPB)(40纳米)/ Al的(100纳米)被成功地制造,这里有机异质结C_(60)/并五苯被用作CGL。实验结果表明,有机异质CGL与C_(60)的结构(15纳米)/并五苯(25 nm)的最有效的电荷产生能力。通过分析装置中的载流子传输特性,器件电流可以归因于有机异质结的CGL。最后,通过数值分析的电流 - 电压(J-V)器件的特性,结果表明有机异质结的电荷产生机构是与量子隧穿过程一致。得到的结果可以帮助那些深刻理解的有机异质结的CGI并制造高效率OLED的工作机制。

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