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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Controlled self-assembly of polymer semiconductors in solution using a solvent-vapor approach
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Controlled self-assembly of polymer semiconductors in solution using a solvent-vapor approach

机译:使用溶剂蒸气方法控制溶液中聚合物半导体的自组装

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摘要

A facile solution treatment strategy for controlling the microstructure of conjugated polymers using a non-solvent vapor is introduced. The content of well-ordered poly(3-hexylthiophene) (P3HT) aggregates in solution was precisely controlled by varying the non-solvent vapor exposure time. P3HT chains were self-assembled upon exposure to the non-solvent vapor to minimize the unfavorable interactions with the non-solvent molecules. The effect of solvent vapor on the molecular ordering and morphologies of P3HT films was investigated by UV-Vis spectroscopy, atomic force microscopy, and polarized optical microscopy. These studies reveal that the self-assembled P3HT aggregates have well-ordered nanofibrillar structures formed via pi-pi stacking. This strategy paves the way toward fabricating well-ordered polymeric structures, especially in the field of opto-electronic applications including FETs, LEDs, and lasers, where proper alignment or molecular assembly is in great demand.
机译:引入了用于控制使用非溶剂蒸气进行共轭聚合物的微观结构的容易解决方法。 通过改变非溶剂蒸气暴露时间,精确地控制溶液中富裕的聚(3-己基噻吩)(P3HT)聚集体的含量。 在暴露于非溶剂蒸汽时自组装P3HT链以最小化与非溶剂分子的不利相互作用。 通过UV-Vis光谱,原子力显微镜和偏振光学显微镜研究了溶剂蒸气对P3HT薄膜的分子序和形态的影响。 这些研究表明,自组装的P3HT聚集体具有通过PI-PI堆叠形成的良好有序的纳米纤维结构。 该策略铺设了朝向制造良好订购的聚合物结构的方式,特别是在包括FET,LED和激光器的光电应用领域,其中适当的对准或分子组件具有很大的需求。

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