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Effects of electric fields on the photonic crystal formation from block copolymers

机译:电场对嵌段共聚物形成光子晶体的影响

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Effects of electric fields on the self-assembly of block copolymers have been investigated for thin films of polystyrene-b-poly(2-vinyl pyridine); PS-b-P2VP, 52 kg/mol-b-57 kg/mol and 133 kg/mol-b-132 kg/mol. Block copolymers of polystyrene and poly(2-vinyl pyridine) have been demonstrated to form photonic crystals of ID lamellar structure with optical band gaps that correspond to UV-to-visible light. The formation of lamellar structure toward minimum free-energy state needs increasing polymer chain mobility, and the self-assembly process is accelerated usually by annealing, that is exposing the thin film to solvent vapor such as chloroform and dichloromethane. In this study, thin films of block copolymers were spin-coated on substrates and placed between electrode arrays of various patterns including pin-points, crossing and parallel lines. As direct or alternating currents were applied to electrode arrays during annealing process, the final structure of thin films was altered from the typical ID lamellae in the absence of electric fields. The formation of lamellar structure was spatially controlled depending on the shape of electrode arrays, and the photonic band gap also could be modulated by electric field strength. The spatial formation of lamellar structure was examined with simulated distribution of electrical potentials by finite difference method (FDM). P2VP layers in self-assembled film were quaternized with methyl iodide vapor, and the remaining lamellar structure was investigated by field emission scanning electron microscope (FESEM). The result of this work is expected to provide ways of fabricating functional structures for display devices utilizing photonic crystal array.
机译:对于聚苯乙烯-b-聚(2-乙烯基吡啶)薄膜,已经研究了电场对嵌段共聚物自组装的影响。 PS-b-P2VP,52 kg / mol-b-57 kg / mol和133 kg / mol-b-132 kg / mol。已经证明聚苯乙烯和聚(2-乙烯基吡啶)的嵌段共聚物形成ID层状结构的光子晶体,其带隙对应于UV至可见光。朝向最小自由能态的层状结构的形成需要增加聚合物链的迁移率,并且通常通过退火来加速自组装过程,这是将薄膜暴露于溶剂蒸气如氯仿和二氯甲烷中。在这项研究中,将嵌段共聚物薄膜旋涂在基板上,并放置在各种图案的电极阵列之间,包括针尖,交叉和平行线。当在退火过程中将直流电或交流电施加到电极阵列时,在没有电场的情况下,薄膜的最终结构会从典型的ID薄片中改变。层状结构的形成在空间上取决于电极阵列的形状,并且光子带隙也可以通过电场强度来调节。通过有限差分法(FDM)通过模拟电势分布检查了层状结构的空间形成。自组装膜中的P2VP层用甲基碘蒸气季铵化,并通过场发射扫描电子显微镜(FESEM)研究剩余的层状结构。预期这项工作的结果将为使用光子晶体阵列的显示装置提供制造功能结构的方法。

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