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首页> 外文期刊>Journal of Applied Physics >Enhancing the electroluminescence efficiency by controlling the migration of excited states to quenching sites in a truxene-based oligomer
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Enhancing the electroluminescence efficiency by controlling the migration of excited states to quenching sites in a truxene-based oligomer

机译:通过控制基于戊二烯的低聚物中激发态向猝灭位点的迁移来提高电致发光效率

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摘要

Control of unwanted low-energy emission originating due to trap states is crucial for improving the emission efficiency and for maintaining the color purity in blue light-emitting diodes. Here, a truxene-based emitter (T-pyrene) that is a good candidate for the blue emitter is investigated using photophysical studies. Steady-state absorption of the emitter reveals the presence of a charge-transfer state, and the photoluminescence spectrum suggests an occurrence of a strong interchain/exciplex state. Time-resolved photoluminescence (TRPL) and fluence-dependent measurements of the material in the dilute solution show the presence of multiple excitonic processes contributing to the delayed fluorescence. Similar studies on the pristine film suggest that the delayed fluorescence is dominated by the presence of the traps. By blending the oligomer with a higher bandgap polymer matrix, poly(9-vinyl carbazole) (PVK), a type I heterojunction at the T-pyrene:PVK interface is obtained that confines the generated excitons in T-pyrene. With this architecture, device efficiencies with T-pyrene (20 wt. %):PVK show significantly enhanced efficiency than those of the pristine device. We elucidate the relevance of the matrix:T-pyrene system using TRPL and fluence-dependent studies on T-pyrene (20 wt. %):PVK. Time-resolved emission spectra on the T-pyrene (20 wt. %):PVK films do not show red-shifted emission with time delays, which suggests the passivation of the quenching sites due to the dispersion of T-pyrene in PVK to prevent the intermolecular interactions.
机译:控制由于陷阱态而引起的有害的低能发射对于提高发射效率和维持蓝色发光二极管的色纯度至关重要。在这里,使用光物理研究来研究基于丁烯的发射体(T-py),它是蓝色发射体的良好候选者。发射极的稳态吸收揭示了电荷转移状态的存在,并且光致发光光谱表明存在强链间/激基状态。时间分辨光致发光(TRPL)和稀溶液中材料的注量依赖性测量结果表明,存在多个激子过程,这些过程导致了荧光延迟。对原始膜的类似研究表明,延迟荧光主要由陷阱的存在引起。通过将低聚物与带隙较高的聚合物基体聚(9-乙烯基咔唑)(PVK)混合,可以在T-py:PVK界面处获得I型异质结,从而将生成的激子限制在T-py中。通过这种架构,使用T-py(20 wt。%):PVK的设备效率比原始设备的效率显着提高。我们使用TRPL阐明了基质:T--体系的相关性以及对T-py(20 wt。%):PVK的注量依赖性研究。 T-py(20 wt。%):PVK膜上的时间分辨发射光谱未显示出随时间延迟的红移发射,这表明淬灭位点的钝化是由于T-py在PVK中的分散以防止分子间的相互作用。

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  • 来源
    《Journal of Applied Physics 》 |2019年第12期| 125502.1-125502.9| 共9页
  • 作者单位

    Indian Inst Technol Dept Phys Mumbai 400076 Maharashtra India;

    Indian Inst Technol Delhi Dept Mat Sci & Engn New Delhi 110016 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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