Organic Electronic Materials Laboratory, Department of Information Display, Kyung Hee University , Dongdaemoon-Gu, Seoul 02447, Republic of Korea.
Central Research Institute , KISCO, 69, Yangcheon-ro 75-gil, Gangseo-gu, Seoul 07537, Republic of Korea.
ACS Appl Mater Interfaces. 2016 Jul 20;8(28):18256-65. doi: 10.1021/acsami.6b03281. Epub 2016 Jul 6.
New soluble host materials with benzocarbazole and triphenyltriazine moieties, 11-[3-(4,6-diphenyl-[1,3,5]triazin-2-yl)-phenyl]-11H-benzo[a]carbazole and 11-[3'-(4,6-diphenyl-[1,3,5]triazin-2-yl)-biphenyl-4-yl]-11H-benzo[a]carbazole, were synthesized for highly efficient red phosphorescent organic light-emitting diodes (PHOLED). Hole-transporting benzocarbazole moiety and electron transporting triphenyltriazine moiety, which are severely twisted each other enhance the solubility of those materials in common organic solvent. The improved solubility from this molecular design could be due to a reduced π-π stacking interaction, which gives a very uniform film morphology after spin coating of those materials. As a result, we obtained highly efficient soluble PHOLEDs combined with an evaporated blue common layer structure. The resultant red PHOLED exhibited the maximum current efficiency as well as external quantum efficiency values up to 23.7 cd/A and 19.0%.
新型可溶性主体材料具有苯并咔唑和三嗪部分,11-[3-(4,6-二苯基-[1,3,5]三嗪-2-基)-苯基]-11H-苯并[a]咔唑和 11-[3'-(4,6-二苯基-[1,3,5]三嗪-2-基)-联苯-4-基]-11H-苯并[a]咔唑,用于高效红色磷光有机发光二极管(PHOLED)。空穴传输苯并咔唑部分和电子传输三嗪部分,彼此严重扭曲,提高了这些材料在常见有机溶剂中的溶解度。这种分子设计提高的溶解度可能是由于减少了π-π堆积相互作用,这使得在旋涂这些材料后形成非常均匀的膜形态。结果,我们获得了高效的可溶性 PHOLED,结合了蒸镀的蓝色公共层结构。所得的红色 PHOLED 表现出最大的电流效率以及外部量子效率值高达 23.7 cd/A 和 19.0%。