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Novel host materials for blue phosphorescent OLEDs

机译:蓝磷光OLED的新型主体材料

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We present two classes of host materials for blue phosphors. The first are carbazole substituted biphenyls 1-9. In these CBP-type materials the triplets are confined to one half of the molecules by using either twisted biphenyls or by a metalinkage of the carbazoles to the biphenyl. We obtained high triplet energies of 2.95-2.98 eV and high glass transition temperatures in the range of 100-120 °C. OLEDs were fabricated using the host material 6 and the carbene emitter Ir(dbfmi) with pure blue emission at 450 nm. The devices achieved an external quantum efficiency of 8.7% at 100 cd/m2 and 6.1% at 1000 cd/m2. MBPTRZ with an electron transporting biscarbazolyltriazine that is separated from the hole transporting carbazole by a non-conjugated, meta-linked biphenyl unit is an example for a bipolar matrix material. The excellent glass forming properties and the high Tg of 132 °C ensure morphological stability in OLEDs. The meta-linkage and the additional twist at the biphenyl unit, which is achieved by two methyl groups in the 2- and 2'-position of the biphenyl in MBPTRZ leads to a decoupling of the electron accepting and electron donating part and therefore to a high triplet energy of 2.81 eV. DFT calculations show a clear separation of the electron and hole transporting moieties. A phosphorescent OLED with MBPTRZ as host and FIrpic as emitter reached a maximum external quantum efficiency of 7.0%, a current efficiency of 16.3 cd/A and a power efficiency of 6.3 lm/W.
机译:我们提出两类主体材料为蓝色荧光粉。第一是咔唑取代的联苯1-9。在这些CBP型材料的三元组通过使用扭曲联苯或由咔唑向联苯的metalinkage局限于分子的一半。我们在100-120℃范围内获得2.95-2.98电子伏特高的三重态能量和高玻璃化转变温度。的OLED使用主体材料6和发射极卡宾的Ir(dbfmi)用纯蓝色发光在450nm处制造。该器件在1000cd / m 2的实现的,在100 cd / m2的8.7%和6.1%的外量子效率。 MBPTRZ与从空穴传输的咔唑通过非共轭的,间位连接的联苯单元分离的电子传输biscarbazolyltriazine为双极性基质材料的实例。优异的玻璃形成特性和132℃的高Tg确保在OLED形态稳定性。的元键和联苯单元,它是由两个甲基在MBPTRZ引线联苯的2-和2'-位置向电子接受和电子的去耦取得的附加捻度供一部分,因此到2.81电子伏特的高三重态能量。 DFT计算显示电子和空穴传输部分的一个清晰的分离。与MBPTRZ OLED作为宿主和FIrpic的作为发射体磷光达到的7.0%的最大外量子效率,16.3 CD / A和6.3流明/瓦的功率效率的电流效率。

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