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Influence of the dendron chemical structure on the photophysical properties of bisfluorene-cored dendrimers

机译:树突化学结构对双芴核树枝状聚合物光物理性质的影响

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A detailed study of the photophysics of a family of bisfluorene-cored dendrimers is reported. Polarized time-resolved fluorescence, singlet-singlet exciton annihilation and fluorescence quantum yield measurements were performed and used to understand how the dendron structure affects the light-emitting properties of the materials. The exciton diffusion rate is similar in all films studied. An increase in the nonradiative deactivation rate by nearly one order of magnitude is observed in films of dendrimers with stilbenyl and carbazolyl based dendrons as compared to solutions, whereas the dendrimers with biphenyl and diphenylethylenyl dendrons showed highly efficient emission (photoluminescence quantum yields of 90%) in both solution and the solid state. The results of the materials that show fluorescence quenching can be explained by the presence of quenching sites at a concentration of just a fraction of a percent of all macromolecules. A possible explanation of this quenching is hole transfer from the emissive chromophore to the dendron in a face-to-face geometry. These results are important for the design of efficient blue emitters for optoelectronic applications. (C) 2008 American Institute of Physics.
机译:报道了对双芴核树枝状大分子的光物理的详细研究。进行了极化的时间分辨荧光,单重态单态激子an灭和荧光量子产率测量,并用于了解树枝状结构如何影响材料的发光性能。在所有研究的薄膜中,激子扩散速率都相似。与溶液相比,在具有二苯乙烯基和咔唑基树突的树枝状聚合物的薄膜中,观察到非辐射失活速率提高了近一个数量级,而具有联苯和二苯乙烯基树枝状的树枝状聚合物显示出高效的发射(光致发光量子产率为90%)无论是溶液还是固态显示荧光猝灭的材料的结果可以通过以仅占所有大分子的百分之一的浓度的猝灭位点的存在来解释。这种淬灭的一个可能解释是空穴以面对面的几何形状从发射发色团转移到树枝状结构。这些结果对于设计用于光电应用的高效蓝色发射器非常重要。 (C)2008美国物理研究所。

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