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Ordering stripe structures of nanoscale rods in diblock copolymer scaffolds

机译:二嵌段共聚物支架中纳米级棒的有序条纹结构

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摘要

We report a simulation on the formation of ordered stripe structures of nanoscale rods driven by symmetric diblock copolymer melts. Due to the preferential adsorption of one species of the diblock onto the mobile rods, the phase ordering process will coupe with the movement of rods. we find that the self-assembly of rods on the copolymer scaffold produces the highly ordered nanowires of rods, and copolymer blends in turn form the well-oriented lamellar structure. This is due to the interplay among the micro-phase separating dynamics in the diblock copolymer, the wetting interaction between rods and diblock copolymer, and the nematic ordering dynamics of rods. We examine the influence of the domain size, the wetting strength, and the rod number density on the formation of such a nanoscale structure. Additionally, we indicate that the orientation of the pattern can be well controlled by external fields acting on the rods. The results suggest that our model system may provide a novel and simple way to control and design the ordering nanowire structure.
机译:我们报告了由对称的二嵌段共聚物熔体驱动的纳米级棒的有序条纹结构形成的模拟。由于一种二嵌段的优先吸附在移动棒上,相序过程将随着棒的移动而克服。我们发现,杆在共聚物支架上的自组装产生了高度有序的杆纳米线,而共聚物共混物又形成了取向良好的层状结构。这是由于二嵌段共聚物中的微相分离动力学,棒与二嵌段共聚物之间的润湿相互作用以及棒的向列有序动力学之间的相互作用。我们研究了畴尺寸,润湿强度和棒数密度对这种纳米级结构形成的影响。另外,我们指出,图案的方向可以通过作用在杆上的外部场很好地控制。结果表明,我们的模型系统可以提供一种新颖且简单的方法来控制和设计有序纳米线结构。

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