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OPTICAL ABSORPTION IN THE SUBSTITUTED PHENYLENE-BASED CONJUGATED POLYMERS - THEORY AND EXPERIMENT

机译:取代的基于苯的共轭聚合物的光吸收-理论与实验

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摘要

We investigate theoretically and experimentally the effects of (2,5) chemical substitution on the optical absorption in the phenylene-based conjugated polymers. Theoretically, substitution destroys both the charge conjugation symmetry and spatial symmetry that characterize the unsubstituted materials. Within Coulomb-correlated theoretical models, the effect of broken charge-conjugation symmetry alone on the underlying electronic structure and on the absorption spectrum is rather weak. When both broken spatial symmetry and broken charge-conjugation symmetry are taken into account, a strong effect on the electronic structure of polyphenylene derivatives is found. In spite of the strong effect of the broken symmetries on the electronic structure, the effect on the optical-absorption spectrum is weak. This surprising result is a consequence of the subtle nature of the configuration interaction in the substituted polyphenylenes within Coulomb-correlated models. We demonstrate numerically an approximate sum rule that governs the strength of an absorption band at 3.7 eV in the absorption spectra of poly(para-phenylene vinylene) (PPV) derivatives. Although substitution can make a previously forbidden transition weakly allowed, the latter acquires strength from a ''finite-size band'' at about the same energy, and not from a higher-energy band at 4.7 eV, as has been previously claimed. It is further predicted that the 3.7-eV band is polarized predominantly along the polymer-chain axis. We have measured the polarization dependence of the optical absorption in an oriented-substituted PPV film. We found that the two lowest-energy absorption bands are polarized predominantly parallel to the chain axis, while the band at 4.7 eV is polarized predominantly perpendicular to the chain axis. These results are in excellent agreement with the theory. [References: 31]
机译:我们在理论上和实验上研究了(2,5)化学取代对亚苯基共轭聚合物中光吸收的影响。从理论上讲,取代破坏了表征未取代材料的电荷共轭对称性和空间对称性。在与库仑相关的理论模型中,单独的打破的电荷共轭对称性对基础电子结构和吸收光谱的影响相当弱。当同时考虑到破坏的空间对称性和破坏的电荷共轭对称性时,发现对聚苯撑衍生物的电子结构有强烈影响。尽管对称性破坏对电子结构的影响很大,但对光吸收光谱的影响却很弱。这一令人惊讶的结果是库伦相关模型中取代的聚亚苯基中构型相互作用的微妙性质的结果。我们在数值上证明了一个近似的求和规则,该规则控制着聚对苯撑亚乙烯基(PPV)衍生物的吸收光谱中3.7 eV处的吸收带强度。尽管取代可以使先前禁止的跃迁微弱地被允许,但后者却从大约相同的能量从“有限尺寸带”获得强度,而不是从先前声称的4.7 eV的较高能带获得强度。进一步预测到3.7-eV带主要沿聚合物链轴极化。我们已经测量了取向取代的PPV膜中光吸收的偏振依赖性。我们发现,两个最低能量吸收带的偏振态主要平行于链轴,而4.7 eV的带的偏振态则主要垂直于链轴。这些结果与理论非常吻合。 [参考:31]

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