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The electronic states of polyfluorene copolymers with alternating donor-acceptor units

机译:具有交替供体-受体单元的聚芴共聚物的电子态

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We calculate the electronic states of the low bandgap polyfluorene-based copolymer DiO-PFDTBT, which consists of alternating 9,9-dioctyl-9H-fluorene and 4,7-di-thiophen-2-ylbenzo[1,2,5]thiadiazole (TBT) units, and compare with the steady-state absorption, emission, and excitation spectrum. Using the semiempirical quantum-chemical (ZINDO) method we can assign the characteristic bands of the "camel-back" absorption spectrum to one charge transfer state at lower energy localized on the TBT unit, and one delocalized excitonic state at higher energy corresponding to the pi-conjugated electron system. Additional "dark" charge transfer states in the gap between these bands have been revealed. Calculations are also made on the red light emitting polyfluorene-based copolymer poly(fluorene-co-benzothiadiazole) (F8BT), which contains benzo[1,2,5]thiadiazole instead of TBT. The nature of the electronic states in F8BT and DiO-PFDTBT are found to be qualitatively the same. (C) 2004 American Institute of Physics.
机译:我们计算了低带隙聚芴基共聚物DiO-PFDTBT的电子态,该共聚物由交替的9,9-二辛基-9H-芴和4,7-二噻吩-2-基苯并[1,2,5]噻二唑组成(TBT)单位,并与稳态吸收,发射和激发光谱进行比较。使用半经验量子化学(ZINDO)方法,我们可以将“骆驼背”吸收光谱的特征谱带分配给位于TBT单元上的较低能量的一种电荷转移态,以及对应于该分子的较高能量的一种离域激子态。 π共轭电子系统。在这些带之间的间隙中还发现了其他“暗”电荷转移状态。还对发红光的基于聚芴的共聚物聚(芴-共-苯并噻二唑)(F8BT)进行了计算,该共聚物包含苯并[1,2,5]噻二唑而不是TBT。发现F8BT和DiO-PFDTBT中电子态的性质在质量上是相同的。 (C)2004年美国物理研究所。

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