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White light and color tuning of OLED with phosphorous and fluorescent materials by solution process

机译:用溶液过程用磷和荧光材料的OLED的白光和彩色调谐

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White light emissive organic light-emitting devices (OLED) with combination with phosphorous and fluorescent materials and that phosphorous materials and transition metal complexes as emissive materials by solution process have been discussed. Firstly, we employed poly(9,9-dioctylfluorene) (PFO)-based polymer light-emitting diodes (PLEDs) doped with red emissive phosphor tris(l-phenylisoquinoline) iridium (III) [lr(piq)3]. In order to change of the electroluminescent (EL) spectrum, PFO-based white PLEDs have been demonstrated utilizing changing the pulse width and frequency. The maximum luminance reached 4,800 cd/nr and the Commission Internationale de L'Eclairage (CIE) coordinates obtained the white emission of (0.33,0.35) at the pulse width and frequency of 100 ns and 1 kHz, respectively. Secondly, we investigated blue phosphorescent molecule of bis[(4,6-difluorophenyl)-pyridinato-N, C2'] (picolinate) iridium(III) (FIrpic) and the red europium complex of tris(dibenzoylmethane)-mono(4,7-di-phenylphenanthroline) europium(III) [Eu(DDP)3phen] doped in poly(N-vinylcarbazole) (PVK). We demonstrated the white OLEDs employing the energy transfer from the host to dopants, showing the CIE coordinates of (0.31, 0.38). It was found that using Eu complexes for red dopants, it is easy to control the doping ratio and obtain the white emission. The OLEDs are fabricated by solution process on a glass substrate or polymeric substrate. Color tuning and white light emission are demonstrated by driving pulsed voltage.
机译:讨论了白色发光有机发光器件(OLED)与磷和荧光材料的组合,以及通过溶液工艺作为发光材料的磷材料和过渡金属配合物。首先,我们使用具有红色发射荧光体Tris(L-苯基异喹啉)铱(III)[LR(PIQ)3]掺杂有掺杂的聚(9,9-二辛基氟烯)(PFO)的聚合物发光二极管(PLED)。为了改变电致发光(EL)光谱,已经利用改变脉冲宽度和频率来证明基于PFO的白色PLED。最大亮度达到4,800张CD / NR,委员会Internationale de L'EclaReage(CIE)坐标分别在脉冲宽度和100ns和1kHz的频率下获得(0.33,0.35)的白色排放。其次,我们研究了双磷的蓝磷光分子[(4,6-二氟苯基) - 吡啶-N,C2'](吡啶酸盐)铱(III)(FIRPIC)和Tris(二苯甲酰甲烷)-mono的红铕综合体(4, 7-二苯基苯蒽啉)铕(III)[EU(DDP)3Phen]掺杂聚(N-乙烯基咔唑)(PVK)。我们展示了采用从宿主到掺杂剂的能量转移的白橄榄,显示(0.31,0.38)的CIE坐标。结果发现,使用欧盟复合物进行红色掺杂剂,易于控制掺杂比并获得白色排放。 OLED通过玻璃基板或聚合物基材上的溶液方法制造。通过驱动脉冲电压来证明颜色调谐和白色发光。

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