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The interchain origin of the green emission band in oxidised poly(9, 9-dioctylfluorene) (PFO)

机译:在氧化聚(9,9-二辛基氟烯)(PFO)中的绿色发射带的间隔起源

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We report systematic measurements of the evolution of the emission characteristics of PFO whilst undergoing photo-oxidation. Pure PFO and highly diluted PFO/polystyrene blended films were prepared for the studies by spin-coating. Each film was oxidised by exposure to the 351 nm line of a cw Ar~+ laser. Both the kinetics of the various spectral components and the photoluminescence intensity for each film was monitored as a function of oxidation time and their respective behaviours were compared. Our results demonstrate that there is a strong tendency for singlet intrachain excitons initially created on pristine PFO segments to migrate to the fluorenone moieties produced by photo-oxidation. However, we conclusively show that emission from states localised at these defect sites cannot account for the appearance of the broad green emission band (g-band) that is well-known to occur in degraded polyfiuorenes. Instead, it is shown that the g-band must emanate from interchain states that are formed after energy has been transferred to the fluorenone moieties (either via energy transfer from non-defective PFO segments or by direct excitation).
机译:我们报告的PFO的同时进行光氧化的发射特性演变的系统测量。纯PFO和高度稀释的PFO /聚苯乙烯共混膜通过旋涂研究制备。各膜通过暴露于351纳米线CW的Ar〜+激光的氧化。二者的各种光谱分量和为每个膜中的光致发光强度的动力学作为氧化时间和它们各自的行为的功能进行比较,监测。我们的结果表明,存在用于对原始PFO段最初创建迁移到通过光氧化产生的芴基部分单链内的激子的强烈倾向。然而,我们得出结论表明,从这些缺陷点不能解释为广大绿色发射带(G带)的外观局部指出,发射是众所周知的降级polyfiuorenes发生。取而代之的是,它表明G带必须从后能源已(通过从非缺陷PFO段能量转移或通过直接激发)转移到芴酮结构部分使得形成链间的状态发出。

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