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大分子结构对共聚物在选择性聚合物主体中自组装行为的影响。

Effect of macromolecular architecture on the self-assembly behavior of copolymers in a selective polymer host.

机构信息

Institute of Applied and Computational Mathematics (IACM), Foundation for Research and Technology Hellas (FORTH), GR-70013 Heraklion, Crete, Greece.

出版信息

Soft Matter. 2018 Dec 5;14(47):9562-9570. doi: 10.1039/c8sm01421c.

Abstract

We present a detailed simulation study of the structural and dynamical behavior of star-shaped mikto-arm (polystyrene)8(poly(ethylene oxide))8, (PS)8(PEO)8, copolymers with eight arms of each type, versus that of a linear polystyrene-block-poly(ethylene oxide), PS-b-PEO, diblock, in a selective homopolymer host. Both copolymers are blended at the same weight fraction 33% with an oligomeric PEO host. We use atomistic molecular dynamics simulations to account for the molecular interactions present in the blends and to study quantitatively the dynamical and structural properties of these systems. The presence of the selective oligomeric PEO host leads to the formation of complex self-assembled structures. While cylindrical structures are formed in the case of linear diblock copolymers, mikto-arm star copolymers form percolated interconnected assemblies within the PEO host. The cylindrical objects formed by the linear diblock copolymers exhibit a higher degree of compactness and a weaker temperature dependence than the percolated network formed by their star-shaped analogues. The dynamics is governed primarily by the local structural heterogeneity, i.e., the environment around a segment, which is determined by the interaction between the different components, the macromolecular architecture of the copolymer as well as the associated geometrical constrains. Our data further stress the fact that the structural and dynamical properties in these blends may be controlled/tuned by the macromolecular architecture of the copolymer and/or by adjusting the temperature.

摘要

我们对具有 8 个臂的星形嵌段(聚苯乙烯)8(聚氧化乙烯)8(PS)8(PEO)8 共聚物与具有 8 个臂的线性聚苯乙烯-嵌段-聚氧化乙烯 PS-b-PEO 二嵌段共聚物的结构和动力学行为进行了详细的模拟研究,在选择性均聚物主体中。两种共聚物均以相同的重量分数 33%与低聚 PEO 主体共混。我们使用原子分子动力学模拟来解释混合物中存在的分子相互作用,并定量研究这些系统的动力学和结构性质。选择性低聚 PEO 主体的存在导致了复杂的自组装结构的形成。虽然线性二嵌段共聚物形成圆柱状结构,但星形嵌段共聚物在 PEO 主体中形成了相互连接的连续网络。线性二嵌段共聚物形成的圆柱状物体比其星形类似物形成的连续网络具有更高的紧凑度和更弱的温度依赖性。动力学主要由局部结构异质性(即片段周围的环境)决定,这取决于不同组分之间的相互作用、共聚物的高分子结构以及相关的几何约束。我们的数据进一步强调了这样一个事实,即这些混合物中的结构和动力学性质可以通过共聚物的高分子结构和/或通过调节温度来控制/调整。

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