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首页> 外文期刊>Macromolecular Research >Effects of Steric Anthracene Moieties and Keto Defects on Photophysics and Color Stability of Poly(9,9-di(2-ethylhexyl)fluorene-stat-anthracene) in Different Local Environments
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Effects of Steric Anthracene Moieties and Keto Defects on Photophysics and Color Stability of Poly(9,9-di(2-ethylhexyl)fluorene-stat-anthracene) in Different Local Environments

机译:立体蒽基和酮基缺陷对不同环境下聚(9,9-二(2-乙基己基)芴-蒽-蒽)的光物理性质和颜色稳定性的影响

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摘要

UV/vis absorption and photoluminescence (PL) spectroscopy were used to examine the photophysical properties of statistical copolymers,poly(9,9-di(2-ethylhexyl)fluorene-stat-anthracene), with the mole ratio of the anthracene group ranging from 0 to 20%. The incorporation of the anthracene group into the conjugated backbone of the polyfluorene affected the PL pattern and quantum yield of the isolated chain in a dilute solution. An investigation of the photophysical properties in solvent-nonsolvent system revealed the formation of low-energy non-emissive and emissive aggregates. The quantity of these aggregated species depends significantly on the mole ratio of anthracene group in the polymer backbone. The existence of only 5 mol% of anthracene in the copolymer causes significant suppression of the well-known green emission (2-525 nm). However, a large quantity of non-emissive aggregates indicated by the red-shift peak at ~415 nm in absorption spectra still formed. Increasing the mole ratio of the anthracene group to 20% suppressed both types of aggregates. Measurements of the absorption and PL spectra in the thin films showed consistent results. Although annealing of the homopolymer polyfluorene films at 150 °C in a vacuum oven caused a drastic increase in green emission, only a slight change was detected in the PL spectra of the copolymers. The presence of oxygen during annealing promoted the green emission of the polymer films.
机译:紫外/可见吸收和光致发光(PL)光谱用于检查统计共聚物聚(9,9-二(2-乙基己基)芴-状态-蒽)的光物理性质,蒽基的摩尔比为0至20%。蒽基团在聚芴的共轭主链中的掺入会影响稀释溶液中分离链的PL模式和量子产率。对溶剂-非溶剂体系中的光物理性质的研究表明,形成了低能量的非发射性和发射性聚集体。这些聚集物质的量显着取决于聚合物主链中蒽基的摩尔比。共聚物中仅存在5 mol%的蒽会显着抑制众所周知的绿色发射(2-525 nm)。然而,在吸收光谱中仍形成了大量的非发射性聚集体,这些聚集体在〜415 nm处有红移峰。将蒽基的摩尔比提高至20%抑制了两种聚集体。薄膜中吸收光谱和PL光谱的测量结果一致。尽管均聚物聚芴薄膜在真空烘箱中于150°C退火导致绿色发射急剧增加,但在共聚物的PL光谱中仅检测到轻微变化。退火期间氧的存在促进了聚合物膜的绿色发射。

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