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Interplay of vesicle and lamellae formation in an amphiphilic polyfluorene-b-polythiophene all-conjugated diblock copolymer at the air-water interface

机译:两亲性聚芴-b-聚噻吩全共轭二嵌段共聚物在空气-水界面的囊泡和薄片形成的相互作用

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Interfacial behavior and surface morphology of an amphiphilic, all-conjugated rod-rod diblock copolymer, poly[9,9-bis(2-ethylhexyl)fluorene]-b-poly(3-(6-diethylphosphonatohexyl)thiophene] or PF2/6-b-P3PHT. were investigated by a combination of Langmuir-Blodgett (LB) techniques, optical spectroscopy, and atomic force microscopy (AFM). For the PF2/6-b-P3PHT diblock copolymer aggregates, well-defined gas, liquid-expanded, liquid-condensed, and solid states were observed at the air-water interface. The backbones of the polar P3PHT blocks exhibited an edge-on arrangement which is driven by the pendant alkyl chains with the polar phosphate groups; i.e., the polymer main chain orients parallel to the air/water interface with the planes of the thiophene rings in vertical orientation (edge-on). For comparison of the optical properties, three different LB films (transferred at surface pressures of 5, 15, and 50 mN/m), spin- or drop-cast films, and solutions were investigated. Spectral shifts and intensity changes of UV-vis absorption and photoluminescence emission of the films were correlated to changes of the surface morphology. The emission properties after excitation into the higher-bandgap PF2/6 absorption band were governed by both Forster resonance energy transfer (FRET) and conformational changes within the P3PHT block. The AFM images illustrate the formation of vesicular species and their transition into a monolayer lamellar phase upon increased surface pressure and a correlation of the optical properties and aggregation state at the air/water interface.
机译:两亲性全共轭棒-棒二嵌段共聚物,聚[9,9-双(2-乙基己基)芴] -b-聚(3-(6-二乙基膦酰基己基)噻吩]或PF2 / 6的界面行为和表面形态-b-P3PHT。通过结合Langmuir-Blodgett(LB)技术,光谱学和原子力显微镜(AFM)进行研究。对于PF2 / 6-b-P3PHT二嵌段共聚物聚集体,定义明确的气体,液体-在空气-水界面处观察到膨胀,液态和固态,极性P3PHT嵌段的骨架显示出边缘排列,该排列由具有极性磷酸基团的侧链烷基链驱动,即聚合物主链平行于空气/水界面的链取向与噻吩环的平面在垂直方向(边对边)。为了比较光学性能,使用了三种不同的LB膜(在5、15和50 mN / m),旋涂或滴铸薄膜以及解决方案进行了研究。薄膜的紫外可见吸收和光致发光强度变化与表面形貌的变化有关。激发进入更高带隙的PF2 / 6吸收带后的发射特性受Forster共振能量转移(FRET)和P3PHT嵌段内构象变化的控制。 AFM图像说明了水泡物种的形成以及它们在表面压力增加时过渡到单层层状相以及空气/水界面处的光学性质和聚集状态的相关性。

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