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Ohmic hole injection into a polyfluorene homopolymer

机译:将欧姆孔注入聚芴均聚物中

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摘要

Here we report the observation of ohmic hole injection from a conducting polymer anode into poly(9,9-dioctylfluorene) (PFO) in a polymer light-emitting diode (LED) structure. Although initially non ohmic, the contact can be made locally ohmic by electrically conditioning the device at voltages higher than the electroluminescence (EL) onset voltage. The ohmic nature of the contact in selected regions is confirmed by the appearance of dark injection space-charge-limited transient currents, which yield hole mobilities in good agreement with those measured by the time-of-flight method. The appearance of ohmic injection is discussed within a model that assumes the existence of electron traps near the anode interface. When the sample is conditioned electrons are injected from the cathode and are trapped near the anode inducing an interfacial dipole that reduces the barrier for hole injection.
机译:在这里,我们报告观察到从导电聚合物阳极到聚合物发光二极管(LED)结构中的聚(9,9-二辛基芴)(PFO)中的欧姆空穴注入。尽管起初是非欧姆性的,但可以通过以高于电致发光(EL)起始电压的电压对设备进行电调节来使触点局部欧姆化。通过出现暗注入空间电荷限制的瞬态电流,可以确认所选区域中接触的欧姆性质,该瞬态电流产生的空穴迁移率与通过飞行时间方法测得的迁移率非常一致。在假设阳极界面附近存在电子陷阱的模型中讨论了欧姆注入的出现。样品经过调节后,电子将从阴极注入并被困在阳极附近,从而引起界面偶极子,从而降低了空穴注入的势垒。

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