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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-Assembly of Symmetric Diblock Copolymers in Planar Slits with and without Nanopatterns: Insight from Dissipative Particle Dynamics Simulations
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Self-Assembly of Symmetric Diblock Copolymers in Planar Slits with and without Nanopatterns: Insight from Dissipative Particle Dynamics Simulations

机译:具有和不具有纳米图案的平面缝中对称二嵌段共聚物的自组装:耗散粒子动力学模拟的见解

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摘要

We present a dissipative particle dynamics simulation study on the formation of nanostructures of symmetric diblock copolymers confined between planar surfaces with and without nanopatterns. The nanopatterned surface is mimicked by alternating portions of the surface that interact differently with the diblock copolymers. The formation of the diblock-copolymer nanostructures confined between the planar surfaces is investigated and characterized by the separation width and the strength of the interaction between the surfaces and the diblock copolymers. For surfaces with nanopatterns, we also vary both the mutual area and location of the nanopatterns, where we consider nanopatterns oil the opposing surfaces that are vertically (a) aligned, (b) staggered, and (c) partially staggered. In the case of planar slits without nanopatterns, we observe the formation of perpendicular and parallel lamellar phases with different numbers of lamellae. In addition, the symmetric diblock copolymers self-assemble into adsorbed layer and adsorbed layer-parallel lamellar phases and a mixed lamellar phase when the opposing surfaces of the planar slits are modeled by different types of wall beads. In the case of nanopatterned planar slits, we observe novel nanostructures and attempt to rationalize the diblock copolymer self-assembly on the basis of the behavior that we observed in the planar slits without nanopatterns. In particular, we investigate the applicability of predicting the structures formed in the nanopatterned slits by a superposition of the observed structures in slits without nanopatterns.
机译:我们提出了一种耗散的粒子动力学模拟研究,研究了对称的二嵌段共聚物的纳米结构的形成,该结构被限制在具有和不具有纳米图案的平面之间。通过交替地与双嵌段共聚物相互作用的表面的交替部分来模仿纳米图案化的表面。研究了限制在平坦表面之间的二嵌段共聚物纳米结构的形成,并通过表面与二嵌段共聚物之间的分离宽度和相互作用的强度来表征。对于具有纳米图案的表面,我们还改变了纳米图案的相互面积和位置,在这里我们考虑将纳米图案涂在垂直相对的表面上(a)对齐,(b)交错和(c)部分交错。在没有纳米图案的平面狭缝的情况下,我们观察到了具有不同数量薄片的垂直和平行薄片相的形成。另外,当通过不同类型的壁珠对平面狭缝的相对表面进行建模时,对称二嵌段共聚物自组装成吸附层和吸附层-平行的层状相和混合的层状相。在具有纳米图案的平面缝隙的情况下,我们观察到了新颖的纳米结构,并基于在没有纳米图案的平面缝隙中观察到的行为,试图合理化二嵌段共聚物的自组装。特别地,我们调查通过在没有纳米图案的狭缝中观察到的结构的重叠来预测在纳米图案的狭缝中形成的结构的适用性。

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