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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Novel amphipathic photoluminescent copolymers containing fluorene, pyridine and thiophene moieties: Synthesis, characterization and self-assembly
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Novel amphipathic photoluminescent copolymers containing fluorene, pyridine and thiophene moieties: Synthesis, characterization and self-assembly

机译:包含芴,吡啶和噻吩部分的新型两亲光致发光共聚物:合成,表征和自组装

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摘要

In order to investigate the explicit electro-optical properties and self-assembly variations of the photoluminescent polymer with sterically hindered side chains, two novel polymers (P0 and P1) based on fluorene, pyridine and thiophene moieties were successfully synthesized through Suzuki coupling reaction. The molecular structures of the polymers were fully characterized by ~1H NMR, ~(13)C NMR, elemental analysis and gel-permeation chromatograph, respectively. The photophysical properties, energy band gap and self-assembly behaviors of polymer P0 and P1 were examined through UV-vis absorption, photoluminescent spectra, cyclic voltammetry, dynamic laser light scattering and transmission electron microscopy. The experimental results indicated that the polymers took on wide band gaps of 3.09 and 3.11 eV with blue-green emission in thin solid films. By combining supramolecular assembly nature of hydroxy, phenolic and pyridyl units with controlled micro-phase separation of well-defined amphipathic di-block copolymers, we have obtained stable vesicles from the fluorescent amphipathic polymers in aqueous solution. The size and morphology of the vesicles formed can be effectively tuned in a range of 1144 nm-291 nm. This work can serve as an excellent exploratory example for the fine self-assembly control principle in the amphipathic photoluminescent copolymer with sterically hindered side chains through the multiple weak interactions of the π-system.
机译:为了研究具有位阻侧链的光致发光聚合物的明确的电光性质和自组装变化,通过铃木偶联反应成功地合成了两个基于芴,吡啶和噻吩基团的新型聚合物(P0和P1)。分别通过〜1H NMR,〜(13)C NMR,元素分析和凝胶渗透色谱法充分表征了聚合物的分子结构。通过紫外可见吸收,光致发光光谱,循环伏安法,动态激光散射和透射电子显微镜检查了聚合物P0和P1的光物理性质,能带隙和自组装行为。实验结果表明,该聚合物在薄固体膜中呈现3.09和3.11 eV的宽带隙,并发出蓝绿色光。通过将羟基,酚基和吡啶基单元的超分子组装性质与明确定义的两亲性二嵌段共聚物的可控微相分离相结合,我们从水溶液中的荧光两亲性聚合物获得了稳定的囊泡。形成的囊泡的大小和形态可以在1144 nm-291 nm范围内有效调节。这项工作可以作为一个很好的探索性例子,说明通过π系统的多重弱相互作用,具有位阻侧链的两亲性光致发光共聚物的精细自组装控制原理。

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