首页> 美国卫生研究院文献>ACS Omega >Solution-Processible Blue Fluorescent Dendrimers withCarbazole/Diphenylamine Hybrid Dendrons for Power-Efficient OrganicLight-Emitting Diodes
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Solution-Processible Blue Fluorescent Dendrimers withCarbazole/Diphenylamine Hybrid Dendrons for Power-Efficient OrganicLight-Emitting Diodes

机译:具有溶液处理能力的蓝色荧光树枝状聚合物咔唑/二苯胺杂化树枝状分子用于高能效有机物发光二极管

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摘要

Two blue fluorescent dendrimers named PVAC2 and PVACA have been newly synthesized and investigated, where the carbazole/diphenylamine hybrid dendron is adopted instead of oligocarbazole. Compared with the reference dendrimer PVCt3, the emission maxima of PVAC2 and PVACA are found to be red-shifted accompanied by a slight reduction of the photoluminescence quantum yield in films. Most importantly, the highest occupied molecular orbital level is elevated from −5.35 eV of PVCt3 to −5.20 eV of PVAC2 and −4.95 eV of PVACA. Because of the favored hole injection, the turn-on voltage is accordingly decreased from 3.6 to 3.2 and 2.6 V. The value of PVACA is even lower than the theoretical limit of 2.78 V. In addition, PVAC2 exhibited the best nondoped device performance, showing a nearly doubled power efficiency of 4.80 lm/W relative to PVCt3 (2.37 lm/W). The results clearly indicate that dendron engineering is also a promising strategy to develop solution-processible blue fluorescent dendrimers capable of being used for power-efficient organic light-emitting diodes.
机译:新合成并研究了两种蓝色荧光树枝状聚合物PVAC2和PVACA,其中采用咔唑/二苯胺杂化树突代替低聚咔唑。与参考树状聚氯乙烯PVCt3相比,发现PVAC2和PVACA的发射最大值发生了红移,同时膜中的光致发光量子产率略有降低。最重要的是,最高的分子轨道能级从PVCt3的-5.35 eV升高到PVAC2的-5.20 eV和PVACA的-4.95 eV。由于有利的空穴注入,导通电压相应地从3.6 V降低到3.2 V和2.6V。PVACA的值甚至低于2.78 V的理论极限。此外,PVAC2表现出最佳的非掺杂器件性能,这表明相对于PVCt3(2.37 lm / W),功率效率几乎达到4.80 lm / W的两倍。结果清楚地表明,树突工程学也是开发可用于高能效有机发光二极管的溶液可加工的蓝色荧光树状聚合物的有前途的策略。

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