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White OLED using h-diketones rare earth binuclear complex as emitting layer

机译:使用H-Diketones稀土的白色OLED稀土核络合物作为发光层

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In this work, the fabrication and the characterization of a white triple-layer OLED using a h-diketones binuclear complex [Eu(btfa)3phenterpyTb(acac)3] as the emitting layer is reported. The devices were assembled using a heterojunction between three organic molecular materials: the N,NV-bis(naphthalen-1-yl)-N,NV-bis(phenyl)benzidine (NPB) as hole-transporting layer, the h-diketones binuclear complex and the tris(8-hydroxyquinoline aluminum) (Alq3) as the electron transporting layer. All the organic layers were sequentially deposited under high vacuum environment by thermal evaporation onto ITO substrates and without breaking vacuum. Continuous electroluminescence emission was obtained varying the applied bias voltage from 10 to 22 V showing a wide emission band from 400 to 700 nm with about 100 cd/m2 of luminance. The white emission results from a combined action between the binuclear complex, acting as hole blocking and emitting layer, blue from NPB and the typical Alq3 green emission. The intensity ratio of the peaks is determined by the layer thickness and by the bias voltage applied to the OLED, allowing us to obtain a color tunable light source.
机译:在这项工作中,报道了使用H-Diketones Binuclect络合物[EU(BTFA)3PhenterPyTB(ACAC)3]作为发光层的白色三层OLED的制造和表征。使用三种有机分子材料之间的异质结来组装器件:N,NV-BIS(萘(萘-1-基)-N,NV-BIS(苯基)苯并丁胺(NPB)作为空穴输送层,H-Diketone Binuclear复合物和Tris(8-羟基喹啉铝)(ALQ3)作为电子传输层。通过热蒸发在ITO基板上并不破坏真空,在高真空环境下顺序沉积所有有机层。获得连续的电致发光发射,改变10至22V的施加的偏置电压,显示宽度为400至700nm的宽发射带,其亮度约为100cd / m2。白色排放由双核复合物之间的组合作用产生,作用为空穴阻塞和发光层,来自NPB的蓝色和典型的Alq3绿色发射。峰的强度比由层厚度和施加到OLED的偏置电压确定,允许我们获得颜色可调光源。

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