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Charge generation mechanism of tandem organic light emitting diodes with pentacene/C-70 organic heterojunction as the connecting layer

机译:以并五苯/ C-70有机异质结为连接层的串联有机发光二极管的电荷产生机理

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摘要

The working mechanism of a planar organic heterojunction based on pentacene/C-70 under reverse voltage is studied through current-voltage (I-V) and capacitance-voltage (C-V) measurements. It is found that the pentacene/C-70 heterojunction generates large amounts of charges and the charge generation is a tunneling process. The proposed Fowler-Nordheim (F-N) model theoretically demonstrates the I-V properties of the pentacene/C-70 heterojunction-based device at different temperatures. The heterojunction interface energy diagram is also well determined by ultraviolet photoemission spectroscopy (UPS) measurements, further elucidating this tunneling process. Moreover, by taking advantage of the large charge generation property of the pentacene/C-70 heterojunction, a high efficiency green tandem organic light emitting diode (OLED) is successfully fabricated, where not only the current efficiency is doubled, but also the power efficiency is greatly enhanced, proving the excellent performance of the pentacene/C-70 heterojunction as charge generation layer (CGL). This work highlights the working mechanism of such heterojunction and provides us a new guide to design high performance tandem OLEDs.
机译:通过电流-电压(I-V)和电容-电压(C-V)测量研究了并五苯/ C-70平面有机异质结在反向电压下的工作机理。发现并五苯/ C-70异质结产生大量电荷,并且电荷产生是隧穿过程。拟议的Fowler-Nordheim(F-N)模型从理论上证明了并五苯/ C-70异质结器件在不同温度下的I-V特性。异质结界面能图也可以通过紫外光发射光谱(UPS)测量很好地确定,从而进一步阐明了隧穿过程。此外,通过利用并五苯/ C-70异质结的大电荷产生特性,成功制造了高效的绿色串联有机发光二极管(OLED),不仅电流效率提高了一倍,而且功率效率也提高了并五苯/ C-70异质结作为电荷产生层(CGL)的出色性能得到了极大的增强。这项工作突出了这种异质结的工作机制,并为我们提供了设计高性能串联OLED的新指南。

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