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Nanostructure of self-assembled rod-coil block copolymer films for photovoltaic applications

机译:用于光伏应用的自组装棒-线圈嵌段共聚物薄膜的纳米结构

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The nanostructures of a series of rod-coil block copolymers, designed for photovoltaic applications, are studied by atomic force microscopy and transmission electron microscopy. The copolymers are composed of a semiconducting poly-p-phenylenevinylene rod with (2'-ethyl)-hexyloxy side chains and a functionalized coil block of various length and flexibility. Both, as deposited and annealed block copolymer films were investigated. The results show that highly ordered structures are only obtained if the coil block is characterized by a glass transition temperature which is significantly lower than the melting temperature of the alkyl side chains. For this material a high molecular mobility and strong driving force for crystallization of the rigid block can be achieved simultaneously. For the smallest coil to rod length ratio, we found a lamellar morphology with perpendicularly oriented lamellae with respect to the substrate. Electron diffraction data show the presence of a periodical molecular arrangement with a characteristic distance of 0.94 nm that is attributed to the distance between conjugated chains separated by the layers of alkyl sidechains.
机译:通过原子力显微镜和透射电子显微镜研究了一系列用于光伏应用的棒-线圈嵌段共聚物的纳米结构。该共聚物由具有(2'-乙基)-己氧基侧链的半导电聚对亚苯基亚乙烯基棒和各种长度和柔性的官能化线圈嵌段组成。研究了沉积和退火的嵌段共聚物薄膜。结果表明,只有当线圈嵌段的特征在于玻璃化转变温度明显低于烷基侧链的熔融温度时,才能获得高度有序的结构。对于这种材料,可以同时获得高分子迁移率和用于刚性嵌段结晶的强大驱动力。对于最小的线圈与棒长之比,我们发现了相对于基材具有垂直取向的薄片的层状形态。电子衍射数据表明存在周期性分子排列,其特征距离为0.94 nm,这归因于被烷基侧链层隔开的共轭链之间的距离。

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