首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A novel donor moiety 9,9,9 ' 9 '-tetramethyl-9,9 ' 10,10 '-tetrahydro-2,10 '-biacridineviaone-pot C-H arylation for TADF emitters and their application in highly efficient solution-processable OLEDs
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A novel donor moiety 9,9,9 ' 9 '-tetramethyl-9,9 ' 10,10 '-tetrahydro-2,10 '-biacridineviaone-pot C-H arylation for TADF emitters and their application in highly efficient solution-processable OLEDs

机译:一种新的供体部分9,9,9'9'-二甲基-9,9'10,10'-一甲基-2,10'-BiacridineViaone-pot用于Tadf发射器的C-H芳基,以及它们在高效溶液的可加工OLED中的应用

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摘要

9,10-Dihydroacridine is a very popular donor unit for the construction of thermally activated delayed fluorescence (TADF) molecules due to its good electron-donating properties and potential for chemical modifications. However, the functionalization of the 2/7-positions of the acridine unit has rarely been explored. In this contribution, the novel donor moiety 9,9,9 ' 9 '-tetramethyl-9,9 ' 10,10 '-tetrahydro-2,10 '-biacridine (BDMAc) was preparedviaa one-pot C-H arylation procedure. Different acceptor fragments, diphenylsulfone (DPS), benzophenone (BPO) and 1,3,5-triazine (TRZ), were then introduced to synthesize three donor-acceptor molecules: DPS-BDMAc, BPO-BDMAc and TRZ-BDMAc. Single crystal X-ray diffraction and theoretical calculations show that these molecules possess twisted molecular geometries and small energy gaps between the singlet and triplet excited states. All molecules exhibit TADF properties with emission peaks between 480-600 nm in both solution and solid states, along with a high emission efficiency of 69-89% in the solid state. Solution-processed organic light-emitting diodes (OLEDs) based on these molecules were prepared with 25 wt% dopant concentration. Although the devices showed efficiency roll-off, a promising maximum EQE of similar to 23% and a luminance of 7173 cd m(-2)were obtained for the BPO-BDMAc-based device. This research demonstrates the potential of this novel acridine group for designing TADF molecules for efficient solution-processable OLEDs.
机译:9,10-二氢吖啶是一种非常流行的施主单元,用于构建由于其良好的电子捐赠性能和化学修饰的潜力而构建热活化的延迟荧光(TADF)分子。然而,吖啶单元的2/7位的官能化很少被探索。在这一贡献中,制备了新的供体部分9,9,9'9'-二甲基-9,9'10,10'-14,9'-10,1-基柠檬(BDMAC),使得viaa一罐C-H芳基化方法。然后引入不同的受体片段,二苯基砜(DPS),二苯基砜(BPO)和1,3,5-三嗪(TRZ)以合成三种供体分子:DPS-BDMAC,BPO-BDMAC和TRZ-BDMAC。单晶X射线衍射和理论计算表明,这些分子具有扭曲的分子几何形状和单线形和三联兴奋状态之间的小能量间隙。所有分子在溶液和固态中呈现出480-600nm之间的发射峰的TADF性能,以及固态的高发射效率为69-89%。基于这些分子的溶液加工的有机发光二极管(OLED)用25wt%的掺杂剂浓度制备。虽然器件显示效率滚动,但基于BPO-BDMAC的装置,获得了类似于23%的最大EQE和7173cd m(-2)的亮度。该研究证明了这种新型吖啶基团设计TADF分子的潜力,用于高效的溶液加工OLED。

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  • 作者单位

    Changzhou Univ Sch Mat Sci &

    Engn Jiangsu Engn Lab Light Elect Heat Energy Converti Jiangsu Collaborat Innovat Ctr Photovolta Sci &

    E Changzhou 213164 Peoples R China;

    Changzhou Univ Sch Mat Sci &

    Engn Jiangsu Engn Lab Light Elect Heat Energy Converti Jiangsu Collaborat Innovat Ctr Photovolta Sci &

    E Changzhou 213164 Peoples R China;

    Changzhou Univ Sch Mat Sci &

    Engn Jiangsu Engn Lab Light Elect Heat Energy Converti Jiangsu Collaborat Innovat Ctr Photovolta Sci &

    E Changzhou 213164 Peoples R China;

    Univ Birmingham Dept Chem Birmingham B15 2TT W Midlands England;

    Changzhou Univ Sch Mat Sci &

    Engn Jiangsu Engn Lab Light Elect Heat Energy Converti Jiangsu Collaborat Innovat Ctr Photovolta Sci &

    E Changzhou 213164 Peoples R China;

    Changzhou Univ Sch Mat Sci &

    Engn Jiangsu Engn Lab Light Elect Heat Energy Converti Jiangsu Collaborat Innovat Ctr Photovolta Sci &

    E Changzhou 213164 Peoples R China;

    Beijing Univ Chem Technol Coll Mat Sci &

    Engn State Key Lab Chem Resource Engn Beijing 100029 Peoples R China;

    Changzhou Univ Sch Mat Sci &

    Engn Jiangsu Engn Lab Light Elect Heat Energy Converti Jiangsu Collaborat Innovat Ctr Photovolta Sci &

    E Changzhou 213164 Peoples R China;

    Changzhou Univ Sch Mat Sci &

    Engn Jiangsu Engn Lab Light Elect Heat Energy Converti Jiangsu Collaborat Innovat Ctr Photovolta Sci &

    E Changzhou 213164 Peoples R China;

    Changzhou Univ Sch Mat Sci &

    Engn Jiangsu Engn Lab Light Elect Heat Energy Converti Jiangsu Collaborat Innovat Ctr Photovolta Sci &

    E Changzhou 213164 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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