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剪切诱导 ABA 三嵌段共聚物薄膜层状排列的分子动力学研究。

Molecular dynamics study of shear-induced lamellar alignment of ABA triblock copolymer thin films.

机构信息

School of Chemical and Biological Engineering and Institute of Chemical Processes, Seoul National University, Seoul 08826, Republic of Korea.

Soft Hybrid Materials Research Center, Korea Institute of Science & Technology, Seoul 02792, Republic of Korea.

出版信息

Soft Matter. 2023 Jun 14;19(23):4297-4303. doi: 10.1039/d3sm00063j.

Abstract

In this study, the shear-induced lamellar alignment of a thin-film ABA triblock copolymer melt was achieved a non-equilibrium coarse-grained molecular dynamics simulation. The ABA triblock copolymer system displayed a slightly different phase behavior under different shear conditions compared to the AB diblock copolymer system. Unlike previous studies that only considered the wall velocity, the Flory-Huggins parameter was considered in our study as a factor that determines lamellar alignment. Pre-aligned lamellae and randomly mixed polymers were used as the initial states for the shear simulation to compare the shear-induced lamellar alignment on each. The two initial conditions displayed different alignment behaviors; specifically, in the pre-aligned lamellae, a tilted structure was observed when the system was not aligned in the shear direction. To explain the difference between the tilted and realigned structures, the potential energy over the simulation time, polymer dynamics from the Van Hove correlation function, and the directional order parameter were investigated. It was inferred that a tilted structure is induced by the energy barrier of realignment originating from the restricted movement of the local polymer chains. Once they cross the energy barrier, block copolymers tend to align in the shear direction to attain energy stabilization through the polymer flow.

摘要

在这项研究中,通过非平衡粗粒分子动力学模拟实现了薄膜 ABA 三嵌段共聚物熔体的剪切诱导层状排列。与 AB 二嵌段共聚物体系相比,ABA 三嵌段共聚物体系在不同的剪切条件下表现出略有不同的相行为。与之前仅考虑壁面速度的研究不同,我们的研究将 Flory-Huggins 参数视为决定层状排列的因素之一。我们使用预取向层和随机混合聚合物作为初始状态进行剪切模拟,以比较它们在每种情况下的剪切诱导层状排列。这两种初始条件表现出不同的排列行为;具体来说,在预取向层中,当体系不在剪切方向上取向时,观察到倾斜结构。为了解释倾斜和重新排列结构之间的差异,研究了模拟时间的势能、范霍夫相关函数的聚合物动力学以及方向有序参数。推断出倾斜结构是由重新排列的能量势垒引起的,这源于局部聚合物链的受限运动。一旦它们越过能量势垒,嵌段共聚物就倾向于沿剪切方向排列,通过聚合物流动实现能量稳定。

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