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Admittance Analysis in (PPE-PPV) Polymer (AnE-PVstat) Light Emitting Diodes

机译:(PPE-PPV)聚合物(ANE-PVSTAT)发光二极管的终止分析

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In this work, admittance analysis of organic light emitting diode (OLED) (anode/active layer/cathode) was performed at room temperature within the frequency range of 1 kHz-1MHz to find out transport properties of both injected carriers from each side. Moreover, by proper chosen metals, electron or hole only OLED devices were prepared and the measurement was resumed to identify the governed transport path of injected carrier. Mobility of injected carriers followed the Poole-Frenkel type conduction mechanism and distinguished in the frequency range due to the difference of transit times in admittance measurement. Beginning of light output and onset of negative capacitance took place at the turn-on voltage (or flat band voltage), 1.8 V, which was the difference of energy band gap of polymer and two barrier offsets between metals and polymer. The proposed analytical model for admittance, derived for the frequency dependent space charge limited behavior leading negative capacitance issues, was applied on the measured data for the present OLED device.
机译:在该作品中,在1kHz-1MHz的频率范围内的室温下进行有机发光二极管(OLED)(阳极/有源层/阴极)的导纳分析,以从每侧找出两个注射载体的运输性质。此外,通过适当的选择金属,制备电子或孔仅制备OLED器件,并恢复测量以识别注入载体的治理传输路径。喷射载体的移动性跟随Poole-Frenkel型导电机构,并在频率范围内分化由于进入测量中的传输时间的差异。光输出的开始和负电容的开始发生在导通电压(或扁平带电压),1.8V,这是聚合物的能带隙和金属和聚合物之间的两个屏障偏移的差异。对于频率依赖空间电荷有限的行为引导的频率依赖空间充电有限的负电容问题,所提出的用于进入的分析模型被应用于目前OLED器件的测量数据。

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