首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Hybrid active layers from a conjugated polymer and inorganic nanoparticles for organic light emitting devices with emission colour tuned by electric field
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Hybrid active layers from a conjugated polymer and inorganic nanoparticles for organic light emitting devices with emission colour tuned by electric field

机译:由共轭聚合物和无机纳米粒子构成的混合有源层,用于有机发光器件,其发射颜色通过电场调节

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We report on the investigation of the electrical and optical properties of hybrid active layers for organic devices consisting of a conjugated polymer MEH-PPV mixed with ZnO and Si nanoparticles. The effect of an electric field on the photoluminescence (PL) from a MEH-PPV : ZnO composite film is studied. We have found that in the absence of an electric field PL emission from the MEH-PPV : ZnO composites have two main maxima in the blue-red regions. Three additional minor PL maxima attributed to the exciplex states were found at -420-480 nm. Application of a voltage bias to planar electrodes significantly suppresses the blue emission. Generation of excited states in the MEH-PPV : ZnO structures implies the presence of several radiative recombination mechanisms with the formation of polymer-nanoparticle complexes including exciplex states and charge transfer between the polymer and nanoparticles that can be controlled by an electric field. This effect provides the possibility to tune by an electric field the emission colour of organic light emitting diodes by combining an efficient emission from both organic/inorganic materials involved.
机译:我们报告了对由共轭聚合物MEH-PPV与ZnO和Si纳米粒子混合组成的有机器件的混合活性层的电学和光学性质的研究。研究了电场对MEH-PPV:ZnO复合膜的光致发光(PL)的影响。我们已经发现,在没有电场的情况下,MEH-PPV的PL发射:ZnO复合材料在蓝红色区域具有两个主要最大值。在-420-480 nm处发现了由于激基复合物状态引起的另外三个次要PL最大值。向平面电极施加电压偏压可显着抑制蓝色发射。在MEH-PPV:ZnO结构中激发态的产生意味着存在几种辐射复合机制,其中包括聚合物-纳米粒子复合物的形成,包括激基复合物状态以及可以通过电场控制的聚合物与纳米粒子之间的电荷转移。该效果提供了通过组合来自所涉及的有机/无机材料的有效发射而通过电场来调节有机发光二极管的发射颜色的可能性。

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