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Highly efficient blueish-green fluorescent OLEDs based on AIE liquid crystal molecules : From ingenious molecular design to multifunction materials

机译:基于aIE液晶分子的高效蓝绿色荧光OLED:从巧妙的分子设计到多功能材料

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摘要

In order to seek the balance point between liquid crystallinity and high efficiency emission, two novel aggregation-induced emission-based (AIE) liquid crystal materials of TPE-PBN and TPE-2PBN, which contain a tetraphenylethene derivative as the emission core and a 4-cynobiphenyl moiety as the mesogenic unit, were designed and prepared. Both simple molecules showed a mesophase at high temperature as evidenced by polarised optical microscopy (POM), differential scanning calorimetry (DSC) and temperature-dependent X-ray diffraction (XRD). Simultaneously, TPE-PBN and TPE-2PBN presented clear AIE characteristics in the blueish-green region and achieved a high emission quantum efficiency of 71% and 83% in the solid state, respectively. Due to the self-assembly properties of thermotropic liquid crystals, both compounds showed higher hole mobilities in the annealed films than in pristine films. Employing TPE-PBN and TPE-2PBN as the emitting materials, both non-doped devices and doped devices were fabricated. The TPE-PBN-based doped OLEDs showed a better device performance with an external quantum efficiency (EQE) of 4.1% which is among the highest EQEs of blue AIE fluorescent OLEDs.
机译:为了寻求液晶性和高效率发射之间的平衡点,两种新型的TPE-PBN和TPE-2PBN聚集致发射基(AIE)液晶材料,其含有四苯乙烯衍生物作为发射核和4设计并制备了以-氰基联苯部分为介晶单元。偏振光学显微镜(POM),差示扫描量热法(DSC)和与温度相关的X射线衍射(XRD)证明了这两个简单分子在高温下均显示中间相。同时,TPE-PBN和TPE-2PBN在蓝绿色区域表现出清晰的AIE特性,并在固态时实现了71%和83%的高发射量子效率。由于热致液晶的自组装特性,与原始膜相比,这两种化合物在退火膜中均显示出更高的空穴迁移率。以TPE-PBN和TPE-2PBN为发光材料,制造了非掺杂器件和掺杂器件。基于TPE-PBN的掺杂OLED显示出更好的器件性能,外部量子效率(EQE)为4.1%,是蓝色AIE荧光OLED的最高EQE之一。

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