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Ordered microstructures by assembly of ABC 3-miktoarm star terpolymers and linear homopolymers

机译:通过组装ABC 3-米克星型三元共聚物和线性均聚物有序组织

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Ordered microstructures assembled from the mixture of the ABC 3-miktoarm star terpolymers and the linear homopolymers have been investigated by using dynamic density functional theory. The simulations reveal that completely different ordered microphase pattern is found with addition of a few percent homopolymers that is identical in component to one of the arms on the ABC 3-miktoarm star terpolymer. For example, the original density pattern of ABC 3-miktoarm star terpolymers with parameters of N-A=N-B=N-C=10 and chi(AB)=0.90, chi(BC)=chi(CA)=0.45 is in a perfectly ordered knitting feature. However, with gradual addition of the linear polymer same as block C on ABC 3-miktoarm star terpolymer into the system, the density patterns evolve with the volume fraction of the linear polymer from the ordered knitting patterns into the hexagonal patterns. Furthermore, with addition of linear polymers same as block A, lamellar microstructure has finally resulted. The simulation points out a way for designing and manufacturing nanomaterials with totally different microstructures. (C) 2004 American Institute of Physics.
机译:通过使用动态密度泛函理论研究了由ABC 3-米克星型星形三元共聚物和线性均聚物的混合物组装而成的有序微结构。模拟结果表明,添加了与ABC 3-miktoarm星形三元共聚物中一个臂相同成分的百分之几的均聚物,发现了完全不同的有序微相图。例如,参数为NA = NB = NC = 10且chi(AB)= 0.90,chi(BC)= chi(CA)= 0.45的ABC 3-米克星型三元共聚物的原始密度模式处于完美的编织特征中。但是,在系统中逐渐添加与ABC 3-mictoarm星形三元共聚物上的嵌段C相同的线性聚合物,密度图则随线性聚合物的体积分数从有序的编织图样演变为六边形图样。此外,通过添加与嵌段A相同的线性聚合物,最终形成了层状微结构。仿真指出了一种设计和制造具有完全不同的微观结构的纳米材料的方法。 (C)2004年美国物理研究所。

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