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High Circular Polarization of Electroluminescence Achieved via Self-Assembly of a Light-Emitting Chiral Conjugated Polymer into Multidomain Cholesteric Films

机译:通过发光手性共轭聚合物的自组装成多畴胆甾型膜,通过将发光的电致发光的高圆偏振。

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We demonstrate a facile route to obtain high and broad-band circular polarization of electroluminescence in single-layer polymer OLEDs. As a light-emitting material we use a donor acceptor polyfluorene with enantiomerically pure chiral side-chains. We show that upon thermal annealing the polymer self-assembles into a multidomain cholesteric film. By varying the thickness of the polymer emitting layer, we achieve high levels of circular polarization of electroluminescence (up to 40% excess of right-handed polarization), which are the highest reported for polymer OLEDs not using chiral dopants or alignment layers. Mueller matrix ellipsometry shows strong optical anisotropies in the film, indicating that the circular polarization of luminescence arises mainly after the photon has been generated, through selective scattering and birefringence correlated in the direction of the initial linear polarization of the photon. Our work demonstrates that chirally substituted conjugated polymers can combine photonic and semiconducting properties in advanced optoelectronic devices.
机译:我们证明了一种容易的路线,以获得单层聚合物OLED中的电致发光的高和宽带圆极化。作为发光材料,我们使用具有对映体纯手性侧链的供体受体多氟烯。我们表明,在热退火时,聚合物自组装成多域胆甾型膜。通过改变聚合物发光层的厚度,我们达到了高水平的电致发光圆极化(右手极化的40%过量),这是用于不使用手性掺杂剂或取向层的聚合物OLED的最高报道。 Mueller矩阵椭圆形测定法显示了薄膜中的强光学各向异性,表明在光子已经产生的光子的产生之后产生发光的圆极化,通过在光子的初始线性偏振的方向上相关的选择性散射和双折射。我们的作品表明,手套取代的共轭聚合物可以将光子和半导体性能结合在先进的光电器件中。

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