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Cell dynamics simulations of sphere-forming diblock copolymers in thin films on chemically patterned substrates

机译:化学图案化基材上薄膜中形成球的二嵌段共聚物的细胞动力学模拟

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摘要

The morphology of sphere-forming block copolymers assembled in thin films on patterned surfaces is theoretically analyzed. The patterns on the lower surface are alternating bands of a given width distinctively attracting or repelling a given block. We find that long- range order can be achieved, and it depends on the commensurability of the characteristic length of the block domains with both band periodicity and slit thickness. The comparison of the simulation results with experimental data shows a very good agreement. Furthermore, we show that the proper selection of the band periodicity and, consequently, of the film thickness permits the system to switch from hexagonal packing to body-centered orthohedra. Therefore, we show that it exists a way to control the formation of long-range ordered structures of different types in this kind of system.
机译:从理论上分析了组装在图案表面上的薄膜中的球形形成嵌段共聚物的形态。下表面上的图案是给定宽度的交替带,分别吸引或排斥给定块。我们发现可以实现远距离排序,这取决于带域的特征长度与带周期性和缝隙厚度的可比性。仿真结果与实验数据的比较显示出很好的一致性。此外,我们表明,适当选择能带周期和相应的膜厚度可以使系统从六边形堆积转变为以人体为中心的正六面体。因此,我们证明了在这种系统中存在一种控制不同类型的远程有序结构形成的方法。

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