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White emission from a single-component single-layer solution processed OLED

机译:单组分单层溶液处理的OLED的白色发射

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We report white electroluminescence from a single component-single layer solution processed organic light emitting diodes (OLEDs). In this work, we have fabricated and characterized OLEDs based on a single polymer synthesized by incorporating a small amount of the orange-light emitting chromophore 1,8-Naphtalimide derivative as side chain to poly(fluorene-alt-phenylene) (PFP). The structure of the devices is ITO/PEDOT:PSS/Active layer/Al. The dopant unit was convalenttly attached to the side chain of polyfluorene by alkyl spacers. We have fabricated devices with different amounts of the orange chromophore (0, 0.0005, 0.005, 0.02 and 0.08 in weight) as well as a device based on a physical blend in the same proportion of 0.08 for comparison purposes. Absorption and Photoluminescence (PL) studies in thin films show no significant interaction can be observed between both moieties in the ground state, but after photoexcitation an efficient energy transfer takes place from PFP to the orange chromophore. We have observed a more efficient energy transfer in these compounds than for physical mixtures of the two chromophores due to a phase separation effect in the blend confirmed by the optical measurements and ESEM analysis, obtaining energy transfer even in diluted solutions from the intramolecular interaction in the copolymers. With this very simple device structure, white light with Commission Internationale de lEclairage (CIE) coordenates (0.34;0.43) is obtained for the electroluminescence (EL) emission and turn on voltage of 6 V for the device based on the copolymer with x = 0.02, together with a good match inthe EL and PL spectra indicative that two emissions are produced by the same species, making this material very suitable for large area solution processed devices in solid state illumination.
机译:我们报告了单组分单层溶液处理的有机发光二极管(OLED)的白色电致发光。在这项工作中,我们已经基于单一聚合物制备并表征了OLED,该聚合物是通过将少量橙色发光发色团1,8-萘二甲酰亚胺衍生物作为侧链掺入聚(芴-alt-亚苯基)(PFP)来合成的。器件的结构为ITO / PEDOT:PSS /有源层/ Al。掺杂剂单元通过烷基间隔物共价附接到聚芴的侧链。为了比较的目的,我们制造了具有不同量的橙色生色团(重量分别为0、0.0005、0.005、0.02和0.08)的设备,以及基于物理混合物的比例为0.08的设备。薄膜中的吸收和光致发光(PL)研究表明,在基态的两个部分之间均未观察到明显的相互作用,但是在光激发后,从PFP到橙色生色团的能量转移有效。由于光学测量和ESEM分析证实了共混物中的相分离效应,我们观察到这些化合物中的能量传递比两种生色团的物理混合物更有效,即使从稀释液中通过分子内相互作用也获得了能量传递。共聚物。通过这种非常简单的器件结构,可以得到带有国际照明委员会(CIE)配合物(0.34; 0.43)的白光用于电致发光(EL)发射,并且基于x = 0.02的共聚物,器件的开启电压为6 V ,以及出色的搭配 EL和PL光谱表明,同一物种会产生两种发射,这使得该材料非常适合固态照明下大面积溶液处理的设备。

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