首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Approaching charge balance in organic light-emitting diodes by tuning charge injection barriers with mixed monolayers
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Approaching charge balance in organic light-emitting diodes by tuning charge injection barriers with mixed monolayers

机译:通过调整带有混合单层的电荷注入势垒来接近有机发光二极管中的电荷平衡

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摘要

Self-assembled monolayers (SAMs) of binary mixtures of 1-butylphosphonic acid and the trifluoromethyl-terminated analogue (4,4,4-trifluoro-1- butylphosphonic acid) were formed on ITO surfaces to tune the work function of ITO over a range of 5.0 to 5.75 eV by varying the mixing ratio of the two adsorbents. The mixed SAM-modified ITO surfaces were used as the anode in the fabrication of OLED devices with a configuration of ITO/SAM/HTL/Alq3/MX/Al, where HTL was the NPB or BPAPF hole-transporting layer and MX was the LiF or Cs _2CO _3 injection layer. It was shown that, depending on the HTL or MX used, the maximum device current and the maximum luminance efficiency occurred with anodes of different modifications because of a shift in the point of hole/electron carrier balance. This provides information on the charge balance in the device and points to the direction to improve the performance.
机译:1-丁基膦酸和三氟甲基封端的类似物(4,4,4-三氟-1-丁基膦酸)的二元混合物的自组装单层(SAMs)在ITO表面上形成,以在一定范围内调节ITO的功函数通过改变两种吸附剂的混合比,将其调节为5.0至5.75 eV。混合的SAM改性ITO表面在制造ITO / SAM / HTL / Alq3 / MX / Al的OLED器件时用作阳极,其中HTL是NPB或BPAPF空穴传输层,而MX是LiF或Cs _2CO _3注入层。结果表明,取决于空穴/电子载流子平衡点的偏移,根据所使用的HTL或MX,使用不同修改形式的阳极会出现最大器件电流和最大亮度效率。这提供了有关设备中电荷平衡的信息,并指出了改善性能的方向。

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