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Charge carrier mobility in organic materials measurement with time-of-flight technique

机译:使用飞行时间技术测量有机材料中的载流子迁移率

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Carrier mobility has an instant demand for understanding the operation mechanism in organic electroluminescent (EL) materials. Under the same electrical field, higher device current can be induced as utilizing higher carrier mobility material. In this report, we have measured the mobility of MA103 (Hole Injection Layer, HIL), MA203 (Hole Transport Layer, HTL), NPB (HTL) and Bebq/sub 2/ (Electron Transport Layer, ETL) with time-of-flight (TOF) technique. The TOF sample is a single-layer OLED (organic light emitting display), and the active area is 1/spl times/1 cm/sup 2/. Experimental results show that hole mobilities of MA103, MA203, and NPB are about one order magnitude higher than the electron mobility of Bebq/sup 2/. Finally, the time-of-flight system has successfully constructed by RiTdisplay Corp., and it can accurately measure the mobility of organic materials.
机译:载流子迁移对理解有机电致发光(EL)材料的工作机理具有迫切的需求。在相同的电场下,可以利用更高的载流子迁移率材料来感应更高的器件电流。在此报告中,我们测量了MA103(空穴注入层,HIL),MA203(空穴传输层,HTL),NPB(HTL)和Bebq / sub 2 /(电子传输层,ETL)的迁移率随时间的变化而变化。飞行(TOF)技术。 TOF样品是单层OLED(有机发光显示器),有效面积为1 / spl倍/ 1 cm / sup 2 /。实验结果表明,MA103,MA203和NPB的空穴迁移率比Bebq / sup 2 /的电子迁移率高约一个数量级。最后,RiTdisplay Corp.已成功构建了飞行时间系统,它可以准确地测量有机材料的迁移率。

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