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首页> 外文期刊>Journal of Applied Physics >Influence of carrier injection on the electromodulation response of trap-rich polymer light-emitting diodes
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Influence of carrier injection on the electromodulation response of trap-rich polymer light-emitting diodes

机译:载流子注入对富陷阱聚合物发光二极管电调制响应的影响

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摘要

We investigate the influence of carrier injection on the electric field distribution in polyfluorene-based polymer light-emitting diodes containing poly(3,4-ethylenedioxythjophene)-poly(styrene sulfonate) (PEDOT:PSS). The devices show strong charge-induced electromodulation spectra due to the accumulation of trapped electrons close to the PEDOT:PSS/polyfluorene interface. The trapped electrons cause the potential to drop preferentially at the interface, enhancing hole injection and substantially reducing the magnitude of the electric field in the bulk semiconductor. The detailed operating mechanisms of such "trap-rich" devices are poorly understood, and in this paper we perform a series of temperature-dependent current-voltage sweeps and electromodulation measurements to clarify the role of the injected charge. We find that the devices show strong field redistribution only at room temperature and that devices operating at lower temperatures (< 100 K) resemble trap-free light-emitting diodes with a uniform electric field that extends through the bulk. We consider also the effects of pixel aging and show that field redistribution effects are reduced after extended device operation.
机译:我们研究载流子注入对包含聚(3,4-乙撑二氧噻吩)-聚(苯乙烯磺酸盐)(PEDOT:PSS)的聚芴基聚合物发光二极管中电场分布的影响。由于靠近PEDOT:PSS /聚芴界面的俘获电子的积累,该器件显示出强电荷诱导的电调制光谱。被俘获的电子导致电位在界面处优先下降,从而增强了空穴注入并大大降低了体半导体中电场的强度。人们对这种“陷阱富集”器件的详细操作机制了解甚少,在本文中,我们进行了一系列与温度有关的电流-电压扫描和电调制测量,以阐明注入电荷的作用。我们发现,这些器件仅在室温下才会显示出强大的电场重新分布,而在较低温度(<100 K)下运行的器件类似于无陷阱的发光二极管,其电场均匀且遍布整个主体。我们还考虑了像素老化的影响,并表明在扩展设备操作后,场重新分布效应降低了。

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