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Unravelling the enigma of ultrafast excited state relaxation in non-emissive aggregating conjugated polymers

机译:在非发光聚集共轭聚合物中揭开超快激发态弛豫的enigma

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摘要

We investigate a class of non-emissive conjugated polymers with very short excited state lifetimes believed to undergo singlet fission and relaxation to mid-gap forbidden excited states. Poly(3-decylthieneylenvinylene) (P3DTV) and its heavy atom analog, poly(3-decylseleneylenvinylene) (P3DSV), are strongly aggregating conjugated polymers that experience large excited state displacements along multiple vibrational modes. We demonstrate this Franck–Condon vibrational activity effectively disperses excitation energy into multiple non-radiative channels that can be explained using a simple, two-state potential energy surface model. Resonance Raman spectroscopy is sensitive to early Franck–Condon vibrational activity and we observe rich harmonic progressions involving multiple high frequency CC backbone symmetric stretching motions (~1000–1600 cm ~(?1) ) in both systems reflecting mode-specific excited state geometrical displacements. Transient absorption spectra confirm that efficient non-radiative processes dominate excited state relaxation dynamics which are confined to π-stacked aggregated chains. Surprisingly, we found little influence of the heteroatom consistent with efficient vibrational energy dissipation. Our results highlight the importance of aggregation and multi-dimensional Franck–Condon vibrational dynamics on the ability to harvest excitons, which are not usually considered in materials design and optimization schemes.
机译:我们调查一类非发光共轭聚合物,具有非常短的激发状态寿命,据信被忽略的次要裂缝和弛豫禁止禁止的兴奋状态。聚(3-邻苯二甲烯乙烯)(P3DTV)及其重原子模拟,聚(3-癸基苯乙烯)(P3DSV)是强烈聚集的共轭聚合物,其沿多种振动模式体验大的激发状态位移。我们证明了这种Franck-Condon振动活动有效地将激励能量分散到多个非辐射通道中,这些通道可以使用简单的两个势能表面模型来解释。共振拉曼光谱对早期的Franck-Condon振动活动敏感,我们观察涉及多个高频CC骨干对称拉伸运动的丰富的谐波进展(〜1000-1600cm〜(Δ1),反映模式特定的激发态几何位移。瞬态吸收光谱确认,有效的非辐射过程主导了局限于π堆叠聚集链的激励状态松弛动态。令人惊讶的是,杂原子与有效的振动能量耗散一致的影响很小。我们的结果突出了聚集和多维Franck-Condon振动动力学对收获激动子能力的重要性,这通常不考虑材料设计和优化方案。

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    Department of Chemistry and Chemical Biology University of New Mexico Albuquerque USA;

    Department of Chemistry and Chemical Biology University of New Mexico Albuquerque USA;

    Department of Chemistry and Chemical Biology University of New Mexico Albuquerque USA;

    Department of Chemistry and Chemical Biology University of New Mexico Albuquerque USA;

    Department of Chemistry and Chemical Biology University of New Mexico Albuquerque USA;

    Department of Chemistry and Chemical Biology University of New Mexico Albuquerque USA;

    Department of Chemistry and Chemical Biology University of New Mexico Albuquerque USA;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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