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Suppression of the keto-emission in polyfluorene light-emitting diodes: Experiments and models

机译:抑制聚芴发光二极管中的酮释放:实验和模型

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The spectral characteristics of polyfluorene (PF)-based light-emitting diodes (LEDs) containing a defined low concentration of either keto-defects or of the polymer poly(9.9-octylfuorene-co-benzothiadiazole) (F8BT) are preseneted. Both types of blend layers were tested in different device configurations with respect to the relative and absolute intensities of green blue emission components. It is shown that blending hole-transporting molecules into the emission layer at low concentration or incorporation of a suitable hole-transport layer reduces the green emission contribution in the electroluminescence (EL) spectrum of the PF:F8BT blend, which is similar to what is observed for the keto-containing PF layer. We conclude that the keto-defects in PF homopolymer layers mainly constitute weakly emissive electron traps, in agreement with the results of quantum-mechanical calculations.
机译:预先确定聚偏二氟乙烯(PF)基发光二极管(LED)的光谱特性,该发光二极管包含确定的低浓度的酮缺陷或聚合物聚(9.9-辛基富勒烯-共苯并噻二唑)(F8BT)。两种类型的共混物层都在不同的设备配置中针对绿蓝色发射组分的相对强度和绝对强度进行了测试。结果表明,将空穴传输分子以低浓度掺入发射层或掺入合适的空穴传输层会降低PF:F8BT共混物在电致发光(EL)光谱中的绿色发射贡献,这与观察到含酮的PF层。我们得出结论,PF均聚物层中的酮缺陷主要构成了弱发射电子陷阱,这与量子力学计算的结果一致。

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