聚合
高分子化学
共聚物
单体
阴离子加成聚合
芴
苯乙烯
聚芴
化学
共轭体系
活性阴离子聚合
活性聚合
光化学
聚合物
材料科学
自由基聚合
有机化学
作者
Kenji Sugiyama,Akira Hirao,Jung-Ching Hsu,Yi‐Chih Tung,Wen‐Chang Chen
出处
期刊:Macromolecules
[American Chemical Society]
日期:2009-05-12
卷期号:42 (12): 4053-4062
被引量:44
摘要
The anionic polymerization of styrene monomers para -substituted with π-conjugated mono-, di-, and tri(9,9-dihexylfluorene) moieties, St-Fl, St-Fl 2, and St-Fl 3, was examined under the conditions either in THF at −78 °C or in tert -butylbenzene at 20 °C with sec -BuLi as an initiator. The polymerization of both St-F l and St-Fl 2 was found to proceed in a living manner to quantitatively afford the corresponding polymers with predictable molecular weights and narrow molecular weight distributions ( M w / M n < 1.08). The anionic polymerization of St-Fl 3 was also indicative to proceed in a living manner but with an unpredictable molecular weight. Both AB and BA diblock copolymers with the well-defined and expected structures could be successfully prepared by the sequential addition of St-Fl or St-Fl 2 followed by styrene and vice versa . The block copolymerization results clearly indicate the living nature of the anionic polymerization of St-Fl and St-Fl 2 and the almost same anionic polymerization behaviors of both monomers as styrene in reactivities of monomer(s) and propagating chain-end anion(s). Solubilities, intrinsic viscosities, and glass transition temperatures of the poly( St-Fl ) and poly( St-Fl 2 ) herein prepared were measured. The optical absorption and luminescence spectra of the studied polymer films showed well-resolved vibronic structures and the peak maxima was progressively increased as the fluorene chain length increased. The luminescence spectra also showed reduced aggregation/excimer emission in comparison with that of parent polyfluorene. The present study suggests that living anionic polymerization could be employed to polymerize other styrene derivatives with π-conjugated moieties in a controlled manner and such polymers may exhibit precisely defined physical properties.
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