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Study of the I-V characteristics of organic light-emitting diodes based on thiophene vynilic derivatives

机译:基于噻吩腈衍生物的有机发光二极管的I-V特性研究

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Organic light-emitting diodes were obtained using a thiophene vynilic derivative polymer electrochemically synthesized. The electrochemistry of the thiophene vynilic derivative, 1,5-bis(2-thienyl)-1,4-peiitadien-3 one (CDV), was conducted in a nonaqueous media. The polymer was deposited on tin oxide (SnO2)-coated glass substrates. The films obtained were physicochemically characterized by infrared absorption, a scanning microscope, microprobe Xray photoelectron analysis, and photoluminescence measurements. It was shown that the coverage efficiency of the films is very high. There is some oxygen contamination, not only at the surface, but also in the bulk of the polymers. The films are photoluminescent with emission between 660 and 720 run. The current-voltage (I-V) characteristics exhibit a turn-on voltage at about 2-4 V depending on the film thickness (120-250 nm). The electroluminescence-voltage (EL-V) curve has a similar shape but a shift of 1-2 V toward higher voltage. In the conducting state, there is no significant dependence of the temperature upon the current. All these facts cannot be explained easily by a simple thermionic model; a thermally activated tunneling effect appears more adequate. The current in the small potential domains has a behavior more or less erratic with a differential negative resistance and a switching effect. This behavior, arising from localized pathways, has a nature different from the injection processes, allowing electroluminescence. These pathways are related to surface heterogeneities (SnO2/polymer films) and aluminum diffusion. By not being directly related to electroluminescence, these pathways could induce a heating effect and an irreversible short-circuit effect. (C) 2002 Wiley Periodicals, Inc. [References: 29]
机译:使用电化学合成的噻吩苯乙炔衍生物聚合物获得有机发光二极管。噻吩苯乙炔衍生物1,5-双(2-噻吩基)-1,4-peiitadien-3 one(CDV)的电化学反应是在非水介质中进行的。将该聚合物沉积在涂有氧化锡(SnO2)的玻璃基板上。通过红外吸收,扫描显微镜,微探针X射线光电子分析和光致发光测量对所获得的膜进行物理化学表征。结果表明,薄膜的覆盖效率很高。不仅在表面而且在大部分聚合物中都存在一些氧污染。该膜是光致发光的,发射在660至720nm之间。电流-电压(I-V)特性根据薄膜厚度(120-250 nm)表现出大约2-4 V的开启电压。电致发光电压(EL-V)曲线具有相似的形状,但向更高的电压偏移1-2V。在导通状态下,温度与电流之间没有显着相关性。所有这些事实都无法通过简单的热电子模型轻松地解释。热激活的隧道效应似乎更充分。小电位域中的电流或多或少具有不稳定的行为,具有差分负电阻和开关效应。由局部途径引起的这种行为具有与注入过程不同的性质,从而允许电致发光。这些途径与表面异质性(SnO2 /聚合物膜)和铝扩散有关。由于这些路径与电致发光不直接相关,因此它们可以引起加热效应和不可逆的短路效应。 (C)2002 Wiley Periodicals,Inc. [参考:29]

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