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Fabrication and characterization of electro-phosphorescent organic light-emitting devices with a ferromagnetic cathode for observation of spin injection effect

机译:用于观察自旋注入效应的具有铁磁阴极的电致磷光有机发光器件的制备和表征

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Organic light-emitting devices (OLEDs) with a phosphorescent molecule Ir(ppy)3 as the emitter and with an Fe cathode as the spin injector were fabricated for the observation of the large degree of circular polarization. The OLED structure was a glass-substrate/ITO/α-NPD/CBP doped with lr(ppy)_3/BCP/AI-oxide/Fe/Al. The mixing ratio of CBP and lr(ppy)_3 in the emissive layer was optimized for high luminescence efficiency. The OLEDs showed circular polarization, and the maximum degree of circular polarization of the OLEDs was 0.4% at the applied magnetic field of 1.6 T at room temperature. On the other hand, no circular polarization was observed from the OLEDs with an Al cathode.
机译:制备了具有磷光分子Ir(ppy)3作为发射器且具有Fe阴极作为自旋注入器的有机发光器件(OLED),用于观察较大的圆偏振度。 OLED结构是掺杂有lr(ppy)_3 / BCP / Al-氧化物/ Fe / Al的玻璃基板/ ITO /α-NPD/ CBP。为了获得高发光效率,优化了发射层中CBP和lr(ppy)_3的混合比例。 OLED显示出圆极化,并且在室温下在1.6 T的施加磁场下,OLED的最大圆极化度为0.4%。另一方面,从具有铝阴极的OLED没有观察到圆极化。

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