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首页> 外文期刊>The Journal of Chemical Physics >Exciton transfer integrals between polymer chains
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Exciton transfer integrals between polymer chains

机译:聚合物链之间的激子传递积分

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The line-dipole approximation for the evaluation of the exciton transfer integral J between conjugated polymer chains is rigorously justified.Using this approximation,as well as the plane-wave approximation for the exciton center-of-mass wave function,it is shown analytically that J~L when the chain lengths are smaller than the separation between them,or J~L-1 when the chain lengths are larger than their separation,where L is the chain length.Scaling relations are also obtained numerically for the more realistic standing wave approximation for the exciton center-of-mass wave function,where it is found that for chain lengths larger than their separation J~L-1.8 or J~L-2,for parallel or collinear chains,respectively.These results have important implications for the photophysics of conjugated polymers and self-assembled molecular systems,as the Davydov splitting in aggregates and the Forster transfer rate for exciton migration decrease with chain lengths larger than their separation.This latter result has obvious deleterious consequences for the performance of polymer photovoltaic devices.
机译:严格证明了用于评估共轭聚合物链之间的激子传递积分J的线偶极近似。利用该近似以及激子质心波函数的平面波近似,分析表明:当链长小于它们之间的间距时为J〜L,当链长大于它们之间的间距时为J〜L-1,其中L为链长。还可以通过数值获得更逼真的驻波的比例关系激子质心波函数的近似值,发现对于链长大于其间隔J〜L-1.8或J〜L-2的链,平行或共线链分别如此。这些结果对共轭聚合物和自组装分子系统的光物理特性,因为聚集体的Davydov分裂和激子迁移的Forster转移速率随链长大于其分离长度而降低。后一结果对聚合物光伏器件的性能具有明显的有害后果。

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