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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Intrachain photoluminescence properties of conjugated polymers as revealed by long oligothiophenes and polythiophenes diluted in an inactive solid matrix
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Intrachain photoluminescence properties of conjugated polymers as revealed by long oligothiophenes and polythiophenes diluted in an inactive solid matrix

机译:共轭聚合物的链内光致发光特性,通过在惰性固体基质中稀释的长寡聚噻吩和聚噻吩来揭示

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The intrinsic intrachain photoluminescence (PL) dynamics of conjugated polymers in the solid state is investigated. We focus on the PL properties of long β-substituted oligothiophenes (8-mer, 12-mer, and 16-mer) and regio-regular (RR) and regio-random poly(3-octylthiophenes) (P3OTs) diluted in the inactive solid matrix polypropylene (PP). The oligothiophenes have well-resolved 0-0 PL and absorption peaks at 4 K and show a good linear relationship with the reciprocal of the ring number. Franck-Condon analyses on the PL spectra reveal that the strength of the electron-phonon coupling represented by the Huang-Rhys factor becomes weak with increasing chain length in the oligomers. In contrast, the presence of stronger electron-phonon coupling is confirmed in RR P3OT despite it being of a much longer chain length than oligomers. This is probably due to its stereoregular chain conformation. The materials used in this work diluted in PP exhibit single-exponential PL decays with lifetimes that decrease with increases in the chain length. The presence of intrachain exciton migration is shown by the time-resolved PL measurements, except for the case of RR P3OT. The energy shifts attributed to intrachain migration are much smaller than those ascribed to interchain migration. We conclude that a change in the torsion angle around the thiophene ring bonds occurs within 50 ps following the absorption transition in thiophene derivatives and that the torsional change gives rise to a constant Stokes shift (60-70 meV), regardless of the chain length. We propose that the Stokes shift can be utilized for estimating the magnitude of exciton migration in thiophene derivatives, even in the case of undiluted films.
机译:研究了固态共轭聚合物的固有链内光致发光(PL)动力学。我们专注于在非活性物质中稀释的长β-取代的低聚噻吩(8-mer,12-mer和16-mer)以及区域规则(RR)和区域随机的聚(3-辛基噻吩)(P3OT)的PL性质固体基质聚丙烯(PP)。寡噻吩具有良好的0-0 PL解析度,在4 K处有吸收峰,并且与环数的倒数表现出良好的线性关系。 Franck-Condon对PL光谱的分析表明,以低聚物形式增加的链长,以Huang-Rhys因子表示的电子-声子耦合的强度变弱。相反,尽管RR P3OT的链长比低聚物长得多,但在RR P3OT中证实存在更强的电子-声子耦合。这可能是由于其立体规则的链构象。用PP稀释的这项工作中使用的材料表现出单指数PL衰变,其寿命随着链长的增加而降低。除RR P3OT的情况外,时间分辨的PL测量结果表明存在链内激子迁移。归因于链内迁移的能量转移比归因于链间迁移的能量转移小得多。我们得出的结论是,噻吩衍生物的吸收跃迁之后,噻吩环键周围的扭转角发生变化,变化幅度为50 ps,并且扭转变化导致恒定的斯托克斯位移(60-70 meV),无论链长如何。我们建议,即使在未稀释膜的情况下,斯托克斯位移也可用于估算噻吩衍生物中激子迁移的幅度。

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