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取代基效应可防止蓝光发射聚芴的自氧化并提高光谱稳定性。

Substituent effect to prevent autoxidation and improve spectral stability in blue light-emitting polyfluorenes.

作者信息

Li Jiu Yan, Ziegler Andreas, Wegner Gerhard

机构信息

Max-Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.

出版信息

Chemistry. 2005 Jul 18;11(15):4450-7. doi: 10.1002/chem.200401319.

Abstract

A group of fluorene-based polymers, PF-1SOR and PF-2SOR, were synthesized and characterized as blue light-emitting materials. PF-1SOR and PF-2SOR displayed nematic liquid crystalline mesophase in films cast from solution. Compared with conventional polyfluorene, PF-1SOR and PF-2SOR display blue-shifted UV absorption and structureless blue fluorescence. The photoluminescence spectra of PF-1SOR and PF-2SOR were found insensitive against thermal treatment in air up to 200 degrees C and the blue electroluminescence in their light-emitting devices was independent of the driving voltage. Compared to the conventional polyfluorenes, the improved spectral stability of these polymers is attributed to the anti-oxidization effect of (3,5-di(tert-butyl)phenoxy)sulfonyl side groups attached to the backbone.

摘要

合成了一组芴基聚合物PF-1SOR和PF-2SOR,并将其表征为蓝色发光材料。PF-1SOR和PF-2SOR从溶液浇铸的薄膜中呈现向列型液晶中间相。与传统聚芴相比,PF-1SOR和PF-2SOR表现出紫外吸收蓝移和无结构的蓝色荧光。发现PF-1SOR和PF-2SOR的光致发光光谱在高达200℃的空气中热处理时不敏感,并且其发光器件中的蓝色电致发光与驱动电压无关。与传统聚芴相比,这些聚合物光谱稳定性的提高归因于连接在主链上的(3,5-二(叔丁基)苯氧基)磺酰基侧基的抗氧化作用。

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