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Effect of χN and underlayer composition on self-assembly of thin films of block copolymers with energy asymmetric blocks

机译:N和底层组合物对能量不对称块嵌段共聚物薄膜自组装的影响

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Many high χ block copolymer (BCP) systems often have one block which shows a strong preference to wet the free interface at the top of the film. This property makes it difficult to form vertically aligned lamellae which are desired for many directed self-assembly (DSA) applications. To better understand this behavior, simulations of thin films of BCPs were carried out using a coarse-grained molecular dynamics (MD) model. The property that leads one block to preferentially wet the free interface over the other is a difference in cohesive energy density (CED) between the two blocks. Our simulation allows for the systematic variation in the CED of each block to investigate how the magnitude of these differences affects self-assembly behavior. BCPs with no CED differences between the blocks show large ranges of underlayer compositions where vertical lamellae will form that are minimally affected by changing χ of the BCP. The range where vertical lamellae will form can be thought of as a process window. Increasing the CED asymmetry of the BCP (i.e. the difference in CED between blocks) causes a reduction in the process window and also causes a shift in the underlayer composition that is the center of the window. Increasing χ increases the process window for vertical lamellae in CED asymmetric systems. This behavior is determined by the trade-off in energy due to three interfacial interactions: A-B interface, film-free surface interface, and film-underlayer interface. At the limits of very high CED asymmetry and low χ, there may be no underlayer compositions where vertical lamellae will form. A simplified model was also developed that can accurately predict these process windows for different CED asymmetry and χ values on the order of seconds and minutes compared to hours and days for the full simulation.
机译:许多高嵌段共聚物(BCP)系统通常具有一个块,其表示润湿膜顶部的自由界面的强偏好。该特性使得难以形成垂直对齐的薄片,这对于许多定向的自组装(DSA)应用是期望的。为了更好地理解这种行为,使用粗粒分子动力学(MD)模型进行BCP的薄膜的模拟。导致一个块优先润湿另一个块的性质是两个块之间的凝聚能量密度(CED)的差异。我们的模拟允许每个块的CED系统变化来研究这些差异的大小如何影响自组装行为。 BCP在块之间没有CED差异显示大范围的底层组合物,其中垂直薄片将形成通过改变BCP的变化影响。垂直薄片将形成的范围可以被认为是过程窗口。增加BCP的CED不对称性(即块之间的CED差异)导致过程窗口的减小,并且也导致底层组合物的偏移,即窗口的中心。增加χ在CED非对称系统中增加垂直薄片的过程窗口。由于三个界面相互作用,通过折衷所能确定该行为:A-B接口,无影线表面接口和薄膜底层界面。在非常高的不对称和低的尺寸下,可能没有垂直薄片将形成的底层组合物。还开发了一种简化的模型,其可以准确地预测不同CED不对称的这些过程Windows,而在几秒和分钟的顺序上的数量和数分钟的数量是完整仿真的数小时。

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