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Improved stability of molecular organic EL devices

机译:改善分子有机EL器件的稳定性

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摘要

Influence of emission sites on emission efficiency and running durability of molecular organic electroluminescent devices was investigated. When fluorescent dye rubrene was doped into TPD diamine hole transport layer, rubrene molecule emitted bright yellow light with a max. luminance of 61 000 cd/m(2). The device had the highest efficiency of 9.8 lm/W at 100 cd/m(2). Half-decay time of the device from initial luminance of 530 cd/m(2) under constant direct current was 3 600 h. On the other hand, when rubrene was doped into BeBq(2) complex electron transport layer, the efficiency was 4.4 Im/W and the half-decay time was 110 h. Thus doping site is found to exert significant influence both on the emission efficiency and the running durability. [References: 10]
机译:研究了发射位置对分子有机电致发光器件发射效率和运行耐久性的影响。当将荧光染料红荧烯掺杂到TPD二胺空穴传输层中时,红荧烯分子发出的亮黄色光最大。亮度为61 000 cd / m(2)。该设备在100 cd / m(2)时的最高效率为9.8 lm / W。在恒定的直流电下,器件从初始亮度530 cd / m(2)的半衰期为3600 h。另一方面,将红荧烯掺杂到BeBq(2)复杂电子传输层中时,效率为4.4 Im / W,半衰期为110 h。因此,发现掺杂位点对发射效率和运行耐久性均具有显着影响。 [参考:10]

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