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Carbazole-Based Electroluminescent Devices Obtained by Vacuum Evaporation

机译:通过真空蒸发获得的基于咔唑的电致发光器件

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摘要

Transparent conductive oxide (SnO_2)/organic layers/aluminum thin film sandwich structures were obtained by vacuum evaporation. The organic component was either a thin carbazole film was deposited onto a thininsulating polymer film. The polymer used was the poly(tetrabromo-p-phenyleneselenide) (PBrPDSe). Photoluminescence measurements have shown that the carbazole thin films emit blue light. (I-V) measurements have shown that the structures exhibit diode characteristics. The forward direction is obtained when the transparent conductive oxide (TCO) is positively biased. However, the reproducibility of the results obtained with a single carbazole layer is poor. It appears that the stability of the sample is improved when a thin PBrPDSe film (40 nm) is introduced between the carbazole and the SnO_2. The polymer film avoids the short circuit effect. In that case, the turn-on voltge of the diode is about 3 V, when the thickness of the carbazole film is around 250 nm and the electroluminescence appears at a voltage of about 5 V. It is shown that the thermionic effect cannot be used to explain the I-V characteristics, which are interpreted with the help of the Fowler-Nordheim tunnel effect.
机译:通过真空蒸发获得透明导电氧化物(SnO_2)/有机层/铝薄膜夹层结构。有机成分是将咔唑薄膜沉积在绝缘薄膜上。所使用的聚合物是聚(四溴-对-亚苯基亚硒酸酯)(PBrPDSe)。光致发光测量表明咔唑薄膜发出蓝光。 (I-V)测量表明该结构具有二极管特性。当透明导电氧化物(TCO)被正偏压时,获得正向。但是,单咔唑层获得的结果的可重复性很差。当在咔唑和SnO_2之间引入PBrPDSe薄膜(40 nm)时,似乎可以提高样品的稳定性。聚合物膜避免了短路效应。在那种情况下,当咔唑膜的厚度为约250nm并且电致发光出现在约5V的电压时,二极管的开启电压为约3V。表明不能使用热电子效应。解释IV特性,借助Fowler-Nordheim隧道效应对其进行解释。

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