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首页> 外文期刊>Organic Electronics >Flexible diphenylsulfone versus rigid dibenzothiophene-dioxide as acceptor moieties in donor-acceptor-donor TADF emitters for highly efficient OLEDs
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Flexible diphenylsulfone versus rigid dibenzothiophene-dioxide as acceptor moieties in donor-acceptor-donor TADF emitters for highly efficient OLEDs

机译:柔性二苯基砜与刚性二苯胺噻吩二氧化物,作为施主 - 受体 - 供体Tadf发射器的受体部分,用于高效OLED

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摘要

Flexible versus rigid molecular structures of donor-acceptor-donor type compounds are investigated with respect to efficiency of thermally activated delayed fluorescence (TADF) by theoretical and experimental approaches. Three highly efficient TADF emitters based on flexible diphenylsulfone and rigid dibenzothiophene-dioxide as acceptor units and di-tert-butyldimethyldihydroacridine as donor moiety were designed and synthesized. Despite they showed similar singlet-triplet splitting (0.01-0.02 eV) and high photoluminescence quantum yields in appropriate hosts, maximum external quantum efficiencies as different as 24.1 and 15.9/19.4% were obtained for organic light emitting devices based on these emitters with, respectively, flexible and rigid molecular structures. The high efficiency of the light-emitting compounds with the flexible molecular structure could be traced to the bi-configurational nature of the lowest singlet and triplet states resulting in higher spin-orbit coupling than for molecules with rigid structures. All derivatives showed bipolar charge transport character. High device efficiency with electron mobility of 3 × 10~(-5) cm~2V~(-1)s~(-1) and hole mobility of 1.3 × 10~(-4) cm~2V~(-1)s~(-1) at the electric field of 5 × 10~5 Vcm~(-1) was recorded for the layer of para-disubstituted diphenylsulfone with flexible molecular structure. This TADF emitter showed an excellent performance in the organic light emitting device, exhibiting a maximum current efficiency, power efficiency, and external quantum efficiency of 61.1 cdA~(-1) , 64.0 lm W~(-1) and 24.1%, respectively.
机译:通过理论和实验方法对供体 - 受体 - 供体型化合物的柔性与刚性分子结构进行研究,并通过理论和实验方法研究了热活化的延迟荧光(TADF)的效率。设计和合成了基于柔性二苯基砜和刚性二苯甲砜和刚性二苯甲酸苯二氧化丁基二氧化物作为受体单元和二叔丁基二甲基丙酮的三种高效的TADF发射器作为供体部分。尽管它们表现出类似的单线 - 三重态分裂(0.01-0.02eV),并且在适当的宿主中的高光致发光量子产量,对于基于这些发射器的有机发光器件,获得了与24.1和15.9 / 19.4%不同的最大外部量子效率,柔性刚性的分子结构。具有柔性分子结构的发光化合物的高效率可以跟踪到最低单态和三重态态的双构型性质,导致比具有刚性结构的分子更高的旋转轨道耦合。所有衍生物都显示了双极电荷运输性格。高器件效率,电子迁移率为3×10〜(-5)cm〜2V〜(-1)S〜(-1)和空穴迁移率1.3×10〜(-4)cm〜2V〜(-1)S 〜(-1)在5×10〜5 VCM〜(-1)的电场,记录具有柔性分子结构的对二磺酸二苯基砜层。该TADF发射器在有机发光器件中表现出优异的性能,表现出最大电流效率,功率效率和61.1cda〜(-1),64.0Lm W〜(-1)和24.1%的外量子效率。

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  • 来源
    《Organic Electronics 》 |2020年第8期| 105733.1-105733.10| 共10页
  • 作者单位

    Department of Polymer Chemistry and Technology Kaunas University of Technology Radvilenu pl. 19 LT-50254 Kaunas Lithuania Institute of Solid State Physics University of Latvia 8 Kengaraga St. Riga LV-1063 Latvia;

    Graduate Institute of Photonics and Optoelectronics National Taiwan University 1 Section 4 Roosevelt Road Taipei 10617 Taiwan;

    Graduate Institute of Photonics and Optoelectronics National Taiwan University 1 Section 4 Roosevelt Road Taipei 10617 Taiwan;

    Graduate Institute of Photonics and Optoelectronics National Taiwan University 1 Section 4 Roosevelt Road Taipei 10617 Taiwan;

    Department of Electrical Engineering Yuan Ze University 135 Yuan-Tung Road Taoyuan 32003 Taiwan;

    Division of Theoretical Chemistry and Biology School of Engineering Sciences in Chemistry Biotechnology and Health KTH Royal Institute of Technology 10691 Stockholm Sweden Department of Chemistry and Nanomaterials Science Bohdan Khmelnytsky National University 18031 Cherkasy Ukraine;

    Division of Theoretical Chemistry and Biology School of Engineering Sciences in Chemistry Biotechnology and Health KTH Royal Institute of Technology 10691 Stockholm Sweden;

    Division of Theoretical Chemistry and Biology School of Engineering Sciences in Chemistry Biotechnology and Health KTH Royal Institute of Technology 10691 Stockholm Sweden College of Chemistry and Chemical Engineering Henan University Kaifeng Henan 475004 PR China;

    Department of Polymer Chemistry and Technology Kaunas University of Technology Radvilenu pl. 19 LT-50254 Kaunas Lithuania;

    Department of Polymer Chemistry and Technology Kaunas University of Technology Radvilenu pl. 19 LT-50254 Kaunas Lithuania;

    Department of Polymer Chemistry and Technology Kaunas University of Technology Radvilenu pl. 19 LT-50254 Kaunas Lithuania;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermally activated delayed fluorescence; Bipolar charge transport; Dibenzothiophene dioxide; Diphenylsulfone; di-tert-butyldimethyldihydroacridine;

    机译:热活化的延迟荧光;双极电荷运输;二苯甲苯乙烯二氧化碳;二苯基砜;di-tert-batyldimethyldihydroacridine;

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