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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Molecular design featuring carbazole-decorated 15H-diindolo[2,3-b:1 ',2 ',3 '-lm]carbazole for improved efficiency and lifetime of thermally activated delayed fluorescence emitters
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Molecular design featuring carbazole-decorated 15H-diindolo[2,3-b:1 ',2 ',3 '-lm]carbazole for improved efficiency and lifetime of thermally activated delayed fluorescence emitters

机译:分子设计具有咔唑 - 装饰的15h-Diindolo [2,3-B:1',2',3'-LM]咔唑,用于提高热活化的延迟荧光发射器的效率和寿命

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In this report, we developed a novel electron donor named 12-(9-phenyl-9H-carbazol-3-yl)-15H-diindolo[2,3-b:1 ',2 ',3 '-lm]carbazole (CzDICz) by introducing a carbazole unit into the rigid 15H-diindolo[2,3-b:1 ',2 ',3 '-lm]carbazole (DICz) donor for designing a stable green thermally activated delayed fluorescence (TADF) emitter, 5-(4,6-diphenyl-1,3,5-triazin-2-yl)-2-(12-(9-phenyl-9H-carbazol-3-yl)-15H-diindolo[2,3-b:1 ',2 ',3 '-lm]carbazol-15-yl)benzonitrile (CzDICzTrz). The effect of the additional carbazole unit in the CzDICz donor on photophysical and electroluminescence properties was unveiled by comparing the CzDICzTrz with the control molecule viz. 2-(15H-diindolo[2,3-b:1 ',2 ',3 '-lm]carbazol-15-yl)-5-(4,6-diphenyl-1,3,5-triazin-2-yl)benzonitrile (DICzTrz) featuring the DICz donor. Photophysical analysis revealed that the CzDICzTrz exhibited small singlet-triplet energy splitting, a short delayed fluorescence lifetime (t(d)), fast reverse intersystem crossing (RISC) and high photoluminescence quantum efficiency compared to DICzTrz. Therefore, the organic light emitting diode fabricated with CzDICzTrz showed superior device performance with a maximum external quantum efficiency (EQE) of 19.9% and a current efficiency of 62.3 cd A(-1) compared to its congener DICzTrz, which showed a maximum EQE of 12.9% and a current efficiency of 38.6 cd A(-1). Moreover, CzDICzTrz based devices achieved 40 times extended operational lifetime up to 80% of its initial luminance (L-0 = 1000 cd m(-2)) of 446 h compared to 11 h of DICzTrz due to its stable CzDICz donor, short t(d) and fast RISC. We believe that the CzDICz donor can contribute to the development of efficient TADF emitters with long operational stability and uncompromised EQE.
机译:在本报告中,我们开发了一种名为12-(9-苯基-9H-咔唑-3-基)-15H-二吲哚-3-基-2,3-B:1',2',3'-LM]咔唑( CZDICZ)通过将咔唑单元引入刚性15H-二吲哚[2,3-B:1',2',3'-LM]咔唑(DICZ)供体,用于设计稳定的绿色热活化延迟荧光(TADF)发射器, 5-(4,6-二苯基-1,3,5-三唑辛-2-基)-2-(12-(9-苯基-9H-咔唑-3-基)-15H-二吲哚 - 2,3-B. :1',2',3'-LM]咔唑-15-yl)苯腈(Czdicztrz)。通过将Czdicztrz与对照分子VIZ进行比较,推出了另外的咔唑单元在Czdicz供体中的效果。 2-(15H-二吲哚[2,3-B:1',2',3'-LM]咔唑-15-y1)-5-(4,6-二苯基-1,3,5-三嗪-2- YL)苯腈(DicZTRZ)为特色DICZ供体。表明,与DICZTRZ相比,CZDICZTRZ表现出小次态三重型能量分裂,短延迟荧光寿命(T(D)),快速反向间隔越过(RISC)和高光致发光量子效率。因此,用Czdicztrz制造的有机发光二极管显示出优异的器件性能,其最大外部量子效率(EQE)为19.9%,与其同ZTRZ相比,62.3 CD A(-1)的电流效率,显示出最大的EQE 12.9%,目前效率为38.6℃(-1)。此外,基于CZDICZTRZ的装置达到了40倍的操作寿命,其初始亮度的80%(L-0 = 1000cd m(-2)),446小时,而DICZTRZ由于其稳定的CZDICZ供体,短t (d)和快速的RISC。我们认为,Czdicz捐助者可以有助于开发高效的TADF发射器,具有长期运行稳定性和无妥协的EQE。

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