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Thermally Cross-Linkable Hole Transport Materials for Solution Processed Phosphorescent OLEDs

机译:用于溶液加工磷光OLED的可热交换空穴传输材料

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摘要

Materials for unique fabrication of a solution-processed, multi-layered organic light-emitting diode (OLED) were developed. Preparation of a hole transport layer with a thermally cross-linkable chemical structure, which can be processed to form a thin film and then transformed into an insoluble film by using an amine-alcohol condensation reaction with heat treatment, was investigated. Functional groups, such as triplenylamine linked with phenylcarbazole or biphenyl, were employed in the chemical structure of the hole transport layer in order to maintain high triplet energy properties. When phenylcarbazole or biphenyl compounds continuously react with triphenylamine under acid catalysis, a chemically stable thin film material with desirable energy-level properties for a blue OLED could be obtained. The prepared hole transport materials showed excellent surface roughness and thermal stability in comparison with the commercial reference material. On the solution-processed model hole transport layer, we fabricated a device with a blue phosphorescent OLED by using sequential vacuum deposition. The maximum external quantum, 19.3%, was improved by more than 40% over devices with the commercial reference material (11.4%).
机译:开发了用于独特制造溶液处理的多层有机发光二极管(OLED)的材料。研究了可热交联化学结构的空穴传输层,可以将其加工以形成薄膜,然后通过使用与热处理的胺 - 醇缩合反应转化成不溶性膜。在空穴传输层的化学结构中使用与苯基咔唑或联苯连接的三碱基胺等官能团,以保持高三重能量性能。当苯基咔唑或联苯化合物在酸催化下与三苯胺连续反应时,可以获得具有所需能量水平性能的化学稳定的薄膜材料。与商业参考材料相比,制备的空穴传输材料显示出优异的表面粗糙度和热稳定性。在溶液加工模型空穴传输层上,我们通过使用连续的真空沉积来制造具有蓝磷光OLED的装置。通过商业参考资料的装置(11.4%),最大外部量子,19.3%的增加超过40%。

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