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Solid-state-concentration effects on the optical absorption and emission of poly(p-phenylene vinylene)-related materials

机译:固态浓度对聚对亚苯基亚乙烯基相关材料的光吸收和发射的影响

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摘要

We present measurements of the optical absorption and emission properties of poly(p-phenylene vinylene) (PPV)-related materials focusing on the differences between molecules isolated by dispersion in an inert host and concentrated molecular films. Optical absorption spectra, photoluminescence (PL) spectra, PL efficiency, and time-resolved PL spectra of dilute blends of PPV oligomers with 2-5 phenylene-phenyl rings are compared with those of dense oligomer and polymer films. In dilute oligomer-poly(methyl methacrylate) (PMMA) blends with high PL efficiency, the PL decay is exponential, independent of both temperature and oligomer length. This implies that the fundamental radiative lifetime of PPV oligomers is essentially independent of oligomer length. Concentrated spin-cast oligomer films and polymers have a faster and strongly temperature-dependent PL decay that approaches that of the dilute oligomer results at low temperature. The differences in PL decay correspond to changes in PL efficiency. The efficiency of the oligomer-PMMA blend is high and only weakly temperature dependent, whereas that of concentrated films is lower and strongly temperature dependent, decreasing by more than a factor of 3 from 10 to 350 K. The quenching of the PL efficiency in concentrated films is due to migration to extrinsic, impurity related centers as opposed to an intrinsic intermolecular recombination process. The PL spectrum of a dilute oligomer blend redshifts substantially, both as the excitation energy is decreased and as the emission time increases. This spectral redshift is due to disorder-induced site-to-site variation and not to diffusion to lower-energy sites. In contrast, no spectral shift with excitation energy or emission time was observed for dense oligomer films.
机译:我们目前对聚(对亚苯基亚乙烯基)(PPV)相关材料的光吸收和发射性能进行测量,重点是通过在惰性主体中分散而分离出的分子与浓缩分子膜之间的差异。将具有2-5个亚苯基-苯环的PPV低聚物的稀共混物的光吸收光谱,光致发光(PL)光谱,PL效率和时间分辨PL光谱与致密的低聚物和聚合物薄膜进行了比较。在具有高PL效率的稀低聚物-聚(甲基丙烯酸甲酯)(PMMA)混合物中,PL衰减呈指数关系,与温度和低聚物长度无关。这意味着PPV低聚物的基本辐射寿命基本上与低聚物长度无关。浓缩的自旋流延低聚物薄膜和聚合物具有更快且与温度密切相关的PL衰减,该衰减接近于低温下稀低聚物的PL衰减。 PL衰减的差异对应于PL效率的变化。低聚物-PMMA共混物的效率高,仅与温度密切相关,而浓缩膜的效率较低,与温度密切相关,从10 K降低至350 K降低了3倍以上。薄膜的迁移是由于迁移到与杂质有关的外部中心,而不是固有的分子间重组过程。稀释的低聚物混合物的PL光谱随激发能量的降低和发射时间的增加而显着红移。这种光谱红移是由于无序诱发的位点之间的变化,而不是扩散到能量较低的位点。相反,对于致密的低聚物膜,未观察到具有激发能或发射时间的光谱偏移。

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