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Tuning charge carrier transport and optical birefringence in liquid-crystalline thin films: A new design space for organic light-emitting diodes

机译:调节液晶薄膜中的电荷载流子传输和光学双折射:有机发光二极管的新设计空间

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摘要

Liquid-crystalline organic semiconductors exhibit unique properties that make them highly interesting for organic optoelectronic applications. Their optical and electrical anisotropies and the possibility to control the alignment of the liquid-crystalline semiconductor allow not only to optimize charge carrier transport, but to tune the optical property of organic thin-film devices as well. In this study, the molecular orientation in a liquid-crystalline semiconductor film is tuned by a novel blading process as well as by different annealing protocols. The altered alignment is verified by cross-polarized optical microscopy and spectroscopic ellipsometry. It is shown that a change in alignment of the liquid-crystalline semiconductor improves charge transport in single charge carrier devices profoundly. Comparing the current-voltage characteristics of single charge carrier devices with simulations shows an excellent agreement and from this an in-depth understanding of single charge carrier transport in two-terminal devices is obtained. Finally, p-i-n type organic light-emitting diodes (OLEDs) compatible with vacuum processing techniques used in state-of-the-art OLEDs are demonstrated employing liquid-crystalline host matrix in the emission layer.
机译:液晶有机半导体具有独特的性能,这使其在有机光电应用中引起极大兴趣。它们的光学和电学各向异性以及控制液晶半导体取向的可能性不仅允许优化电荷载流子传输,而且还可以调节有机薄膜器件的光学性能。在这项研究中,液晶半导体膜中的分子取向通过新颖的刮刀工艺以及不同的退火方案进行调节。改变的对准通过交叉偏振光学显微镜和椭圆偏振光谱法验证。结果表明,液晶半导体取向的改变极大地改善了单电荷载流子器件中的电荷传输。将单个电荷载流子器件的电流-电压特性与仿真结果进行比较,可以得出很好的一致性,由此可以深入了解两端器件中单个电荷载流子的传输。最后,证明了与在现有技术的OLED中使用的真空处理技术兼容的p-i-n型有机发光二极管(OLED)在发射层中采用液晶主体矩阵。

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