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Electrical properties of polymer/metal interface in polymer light-emitting devices: electron injection barrier suppression

机译:聚合物发光器件中聚合物/金属界面的电学性质:电子注入势垒抑制

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The electrical characterization of a high efficient multilayer polymer light emitting diode using poly[(2-methoxy-5-hexyloxy)-p-phenylenevinylene] as the emissive layer and an anionic fluorinated surfactant as the electron transport layer was performed. For the sake of comparison, a conventional single layer device was fabricated. The density current vs. voltage measurements revealed that the conventional device has a higher threshold voltage and lower current compared to the surfactant modified device. The effective barrier height for electron injection was "suppressed". The influence of the interfaces and bulk contributions to the dc and high frequencies conductivities of the devices was also discussed. (c) 2006 Springer Science + Business Media, Inc.
机译:使用聚[(2-甲氧基-5-己氧基)-对亚苯基亚乙烯基]作为发射层和阴离子氟化表面活性剂作为电子传输层,对高效多层聚合物发光二极管进行了电学表征。为了比较,制造了常规的单层器件。密度电流对电压的测量表明,与表面活性剂改性的设备相比,常规设备具有更高的阈值电压和更低的电流。电子注入的有效势垒高度被“抑制”。还讨论了接口的影响以及对器件的直流电和高频电导率的贡献。 (c)2006年Springer Science + Business Media,Inc.

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