首页> 外文OA文献 >Star-shaped hexaaryltriindoles small molecules: Tuning molecular properties towards solution processed organic light emitting devices
【2h】

Star-shaped hexaaryltriindoles small molecules: Tuning molecular properties towards solution processed organic light emitting devices

机译:星形六芳基三吲哚小分子:针对溶液处理的有机发光器件调整分子特性

摘要

We present a series of differently substituted star-shaped hexaaryltriindoles with tunable light-emitting properties. The deep blue emission is unchanged by donor peripheral substituents while an increasing acceptor character produces a reduction of the optical gap, an increased Stokes shift and eventually leads to the appearance of a new electronic level and to the simultaneous deep blue (413 nm) and green (552 nm) emission in solution. Quenching by concentration increases with the acceptor character but is lower as the tendency of these compounds to aggregate is stronger. Solution processed thin films present optical and morphological qualities adequate for device fabrication and similar electronic structure compared to solutions with an emission range from 423 nm up to 657 nm (red), demonstrating the possibility of tuning the energy levels by chemical functionalization. We have fabricated and characterized single-layer solution processed organic light emitting diodes (OLED) to investigate the influence on transport and emission properties of the substituting species. We analyzed the I-V response using a single-carrier numerical model that includes injection barriers and non-uniform electric-field across the layer. As a result, we obtained the electric field dependence of the mobility for each device. Best results are obtained on the most electron rich derivative functionalized with six donor methoxy groups. This material shows the highest emission efficiency in solid state, due to aggregation-induced enhancement, and better transport properties with the highest mobility and a very low turn-on voltage of 2.8 V. The solution processed OLED devices produce stable deep blue (CIE coordinates (0.16, 0.16)) to white (CIE coordinates (0.33, 0.3)) emission with similar luminous efficiencies. © 2012 Elsevier B.V. All rights reserved.
机译:我们提出了一系列具有可调发光特性的不同取代的星形六芳基三吲哚。供体周围的取代基不会改变深蓝色的发射,而增加的受体特性会导致光学间隙的减小,斯托克斯位移的增加,并最终导致出现新的电子能级,同时出现深蓝色(413 nm)和绿色(552 nm)溶液中的发射。浓度淬灭随受体的性质而增加,但随着这些化合物聚集的趋势变强而降低。与发射范围从423 nm到657 nm(红色)的溶液相比,经溶液处理的薄膜具有足够的光学和形态学品质,可用于器件制造和类似的电子结构,这表明可以通过化学功能化来调节能级。我们已经制造并表征了单层溶液处理的有机发光二极管(OLED),以研究其对取代物种的传输和发射特性的影响。我们使用单载流子数值模型分析了I-V响应,该模型包括注入势垒和跨层的非均匀电场。结果,我们获得了每个器件的迁移率的电场依赖性。用六个施主甲氧基官能化的最富电子的衍生物可获得最佳结果。由于聚集诱导的增强,该材料在固态下显示出最高的发射效率,并且具有最高的迁移率和2.8 V的非常低的开启电压,具有更好的传输性能。经过溶液处理的OLED器件产生稳定的深蓝色(CIE坐标) (0.16,0.16))到白色(CIE坐标(0.33,0.3))发射,具有相似的发光效率。 ©2012 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号