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An ambipolar BODIPY derivative for a white exciplex OLED and cholesteric liquid crystal laser toward multifunctional devices

机译:用于白色激发复合材料OLED和胆甾型液晶激光器的双极BODIpY衍生物,用于多功能设备

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摘要

A new interface engineering method is demonstrated for the preparation of an efficient white organic light-emitting diode (WOLED) by embedding an ultrathin layer of the novel ambipolar red emissive compound 4,4-difluoro-2,6-di(4-hexylthiopen-2-yl)-1,3,5,7,8-pentamethyl-4-bora-3a,4a-diaza-s-indacene (bThBODIPY) in the exciplex formation region. The compound shows a hole and electron mobility of 3.3 × 10–4 and 2 × 10–4 cm2 V–1 s–1, respectively, at electric fields higher than 5.3 × 105 V cm–1. The resulting WOLED exhibited a maximum luminance of 6579 cd m–2 with CIE 1931 color coordinates (0.39; 0.35). The bThBODIPY dye is also demonstrated to be an effective laser dye for a cholesteric liquid crystal (ChLC) laser. New construction of the ChLC laser, by which a flat capillary with an optically isotropic dye solution is sandwiched between two dye-free ChLC cells, provides photonic lasing at a wavelength well matched with that of a dye-doped planar ChLC cell.
机译:通过嵌入超薄层的新型双极性红色发光化合物4,4-二氟-2,6-二(4-己基噻吩-),证明了一种用于制备高效白色有机发光二极管(WOLED)的新界面工程方法。在激基复合物形成区域中的2-基)-1,3,5,7,8-五甲基-4-硼-3a,4a-二氮杂-s-茚并二烯(bThBODIPY)在高于5.3×105 V cm-1的电场下,该化合物的空穴迁移率和电子迁移率分别为3.3×10–4和2×10–4 cm2 V–1 s–1。所得的WOLED在CIE 1931色坐标(0.39; 0.35)下显示最大亮度为6579 cd m-2。还证明了bThBODIPY染料是胆甾型液晶(ChLC)激光器的有效激光染料。 ChLC激光器的新结构,通过将带有光学各向同性染料溶液的扁平毛细管夹在两个无染料的ChLC电池之间,可以提供波长与染料掺杂的平面ChLC电池完全匹配的光子激光。

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