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Universal ultrafast signatures of photoexcitations in conjugated polymers: excitons and charge-transfer polarons

机译:共轭聚合物中光激发的通用超快特征:激子和电荷转移极化子

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Abstract: Using subpicosecond transient absorption spectroscopy, we have investigated the primary photoexcitations in thin films and solution of several phenylene-based conjugated polymers and an oligomer. We identify two features in the transient absorption spectra and dynamics that are common to all of the materials which we have studied from this family. The first spectral feature is a photoinduced absorption (PA) band peaking near 1 eV which has intensity-dependent dynamics which match the stimulated emission dynamics exactly over two orders of magnitude in excitation density. This band is associated with singlet intrachain excitons. The second spectral feature (observed only in thin films and aggregated solutions) is a PA band peaking near 1.8 eV, which is longer-lived than the 1 eV exciton PA band, and which has dynamics that are independent (or weakly-dependent) on excitation density. This feature is attributed to charge separated (interchain) excitations. These excitations are generated through a bimolecular process. By comparing to samples in which charged excitations are created deliberately by doping with C$-6$/O, we assign these secondary species as bound polarons. !30
机译:摘要:使用亚皮秒瞬态吸收光谱,我们研究了几种亚苯基共轭聚合物和低聚物在薄膜和溶液中的主要光激发。我们确定了瞬态吸收光谱和动力学中的两个特征,这是我们从该族研究的所有材料所共有的。第一个光谱特征是在1 eV附近达到峰值的光致吸收(PA)波段,该波段具有依赖于强度的动力学,该动力学与激发密度完全在两个数量级上的受激发射动力学匹配。该带与单重态链内激子相关。第二个光谱特征(仅在薄膜和聚集溶液中观察到)是峰峰值为1.8 eV的PA波段,其寿命比1 eV激子PA波段的寿命更长,并且其动力学特性独立于(或弱依赖于)激发密度。此功能归因于电荷分离(链间)激发。这些激发是通过双分子过程产生的。通过与通过掺杂C $ -6 $ / O故意创建带电激发的样品进行比较,我们将这些次要物种指定为束缚极化子。 !30

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