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首页> 外文期刊>Materials Chemistry Frontiers >Pendant conjugated molecules based on a heterogeneous core structure with enhanced morphological and emissive properties for organic semiconductor lasing
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Pendant conjugated molecules based on a heterogeneous core structure with enhanced morphological and emissive properties for organic semiconductor lasing

机译:基于一个吊坠共轭分子异构和增强核心结构有机的形态和发射特性半导体激光

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A family of oligofluorene-type pendant conjugated molecules (C1 and C2), consisting of a triazine center with two diphenylamine and one carbazole heterogeneous substituents to form a donor–acceptor (D–A) core structure, are synthesized and characterized. The relationship between the molecular architectures and the corresponding functional properties was systematically investigated by varying the fluorene lengths and the substituents on the triazine center and by comparing with the linear oligomer counterparts (xFCz), the pendant model compound (DNPhCzT) and the analogue with a homogeneous pendant core structure (T-m). The resulting pendant conjugated molecules exhibited a depressed crystallization tendency and thus enhanced morphology stability due to the incorporation of a bulky heterogeneous pendant core structure. Remarkably, enhanced photoluminescence quantum yields (PLQYs) (0.76 for C1 and 0.61 for C2)were afforded by virtue of the integration of bulky diphenylamine-carbazole heterogeneous core structures, in comparison with their homogeneous pendant analogue T-m (0.58). Solution-processed neat films demonstrated promising amplified spontaneous emission (ASE). The lowest ASE threshold (EASE th ) for the non-doped films was recorded as 5.0 mJcm2 and 6.4 mJcm2 for C1 and C2,respectively.The EASE th was almost unchanged for C1 upon annealing from room temperature to 150 1C, while the EASE th of the linear counterparts exhibited a sudden increase above 100 1C. Compared to C2 with extended oligofluorene arms, C1 with one fluorene arm exhibited a lower EASE th and better optical stability at high temperature. The results suggest that excellent optoelectronic properties and enhanced thermal and morphological stabilities are afforded by constructing pendant conjugated molecules with a bulky heterogeneous core structure, and these materials have great potential as gain media for organic lasing.
机译:一个家庭的oligofluorene-type吊坠共轭分子(C1和C2)组成的三嗪中心有两个二苯胺和一个咔唑异构取代基形成核心结构,亲水(数字-模拟)合成和表征。分子结构和之间相应的功能性质系统地研究了不同芴的长度和取代基的三嗪中心,通过比较线性的低聚物同行(xFCz),吊坠模型化合物(DNPhCzT)和模拟的齐次吊坠核心结构(t m)。产生的吊坠共轭分子展出低迷的结晶倾向,因此由于增强形态稳定整合一个大异构吊坠核心结构。光致发光量子收益率(PLQYs) (0.760.61 C1和C2)提供的笨重的diphenylamine-carbazole的集成异构的核心结构,相比他们均匀吊坠模拟t m(0.58)。Solution-processed整洁的电影了有前途的放大自发辐射(ASE)。最低的ASE阈值(缓解th)non-doped电影mJcm2记录为5.0和6.4分别mJcm2为C1和C2。几乎不变的C1在退火的房间温度150 1 c,而轻松的线性同行突然增加展出超过100 1 c。oligofluorene武器,C1芴的手臂表现出较低的放松和更好的光在高温下稳定。表明,优秀的光电性质和增强热和形态稳定性是通过构造器共轭分子与一个庞大的异构核心结构,这些材料有很大的潜在作为有机激光增益介质。

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