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Composite based polymeric displays: an introduction to a new smart engineering approach to incorporate transition metals to the polymer matrix

机译:基于复合材料的聚合物显示器:将过渡金属结合到聚合物基质中的新型智能工程方法的介绍

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In this paper we report on the production and characterisation of polymeric composites for display device applications. Polymeric composite-based electroluminescence devices (PCELD) were developed using a metal-doped organic layer as an electron-injecting layer. Using transition metals including Ni, Fe and Cu as a dopant and MEH-PPV (Poly(2-Methoxy,5-(2′-Ethyl-hexyloxy)-P-Phenylenevinylene)) as the emitter layer we studied the photoluminescence (PL) intensity of the doped polymer by incorporation of metals in two different ways. These were physical incorporation (laser ablation) and chemical incorporation (mixing). It was found that Fe can improve the PL intensity of undoped polymer if the laser ablation process was carried out for different periods of time. However, the PL intensity decreased when the mixing method was used with different concentrations of the transition metals.
机译:在本文中,我们报告了用于显示设备应用的聚合物复合材料的生产和表征。使用金属掺杂的有机层作为电子注入层,开发了基于聚合物复合材料的电致发光器件(PCELD)。使用包括Ni,Fe和Cu的过渡金属作为掺杂剂并使用MEH-PPV(聚(2-甲氧基,5-(2'-乙基-己氧基)-P-苯撑乙烯撑))作为发射极层,我们研究了光致发光(PL)通过以两种不同方式掺入金属可以使掺杂聚合物的强度达到最大。这些是物理掺入(激光烧蚀)和化学掺入(混合)。发现如果在不同时间段内进行激光烧蚀工艺,Fe可以提高未掺杂聚合物的PL强度。然而,当混合方法与不同浓度的过渡金属一起使用时,PL强度降低。

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