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Charge injection and transport model in organic light-emitting diodes with aluminum cathodes prepared by ion beam assisted deposition

机译:离子束辅助沉积制备铝阴极有机发光二极管的电荷注入和传输模型

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摘要

We have fabricated highly stable organic electroluminescent devices based on spin-coated poly-p-phenylene-vynylene (PPV) thin films. The electrical properties of aluminum cathode, prepared by ion beam assisted deposition, on PPV have been investigated and compared to those by thermal evaporation. Although energetic particles of Al assisted by Ar~+ ion may damage the organic material, I-V-L characteristics are improved by applying thin Al buffer layer. In addition, a dense Al cathode inhibits the permeation of H_2O and O_2 into PPV film through pinhole defects, and thus retards dark spot growth. It may be deduced from highly packed structure of Al cathode with smaller junction resistance between Al and PPV. In conclusion, the lifetime of organic light-emitting device (OLED) has been extended effectively by dense Al film through ion beam assisted deposition process.
机译:我们已经制造了基于旋涂的聚对亚苯基亚乙烯基(PPV)薄膜的高度稳定的有机电致发光器件。已经研究了通过离子束辅助沉积在PPV上制备的铝阴极的电性能,并将其与热蒸发的电性能进行了比较。尽管由Ar〜+离子辅助的Al的高能粒子可能会损坏有机材料,但通过施加薄的Al缓冲层可以改善I-V-L特性。另外,致密的铝阴极抑制了H_2O和O_2通过针孔缺陷渗透到PPV膜中,从而阻碍了暗点的生长。它可以从高度堆积的铝阴极结构中推导出来,而铝和PPV之间的结电阻较小。总之,通过离子束辅助沉积工艺,致密的铝膜有效地延长了有机发光器件(OLED)的使用寿命。

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