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Triplet state spectroscopy of conjugated polymers studied by pulse radiolysis

机译:脉冲辐照研究共轭聚合物的三重态光谱

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摘要

Using the technique of pulse radiolysis we have elucidated the energies and kinetics of triplet states in soluble luminescent conjugated polymers. Using poly(2-methoxy,5-(2'-ethyl-hexoxy)-p-phenylenevinylene) MEH-PPV as an example we explain this technique and show how it can be used to study the triplet states in conjugated polymers. Triplet energy transfer is used to determine 11Ag-13Bu energy gaps and the kinetics of triplet-triplet absorption yields triplet lifetimes. In the case of MEH-PPV, at concentrations up to 50 mg/l, the triplet decay rate shows no change, indicating self-quenching of triplets is not significant. However, if very high electron beam doses are used, high intra chain triplet concentrations can be generated. In this high concentration regime triplet-triplet annihilation becomes effective, as determined by the onset of delayed fluorescence.
机译:使用脉冲辐射分解技术,我们阐明了可溶性发光共轭聚合物中三重态的能量和动力学。以聚(2-甲氧基,5-(2'-乙基-己氧基)-对亚苯基亚乙烯基)MEH-PPV为例,我们解释了该技术,并展示了如何将其用于研究共轭聚合物中的三重态。三重态能量转移用于确定11Ag-13Bu能隙,三重态-三重态吸收动力学产生三重态寿命。在MEH-PPV的情况下,浓度高达50 mg / l时,三重态衰减率没有变化,表明三联体的自猝灭作用不明显。但是,如果使用非常高的电子束剂量,则会产生较高的链内三重态浓度。在这种高浓度条件下,三重态-三重态an灭变得有效,这由延迟荧光的发作确定。

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