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电场诱导层状嵌段共聚物的选择无序化。

Electric field induced selective disordering in lamellar block copolymers.

机构信息

Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.

出版信息

ACS Nano. 2013 May 28;7(5):3854-67. doi: 10.1021/nn3059604. Epub 2013 Apr 10.

Abstract

External electric fields align nanostructured block copolymers by either rotation of grains or nucleation and growth depending on how strongly the chemically distinct block copolymer components are segregated. In close vicinity to the order-disorder transition, theory and simulations suggest a third mechanism: selective disordering. We present a time-resolved small-angle X-ray scattering study that demonstrates how an electric field can indeed selectively disintegrate ill-aligned lamellae in a lyotropic block copolymer solution, while lamellae with interfaces oriented parallel to the applied field prevail. The present study adds an additional mechanism to the experimentally corroborated suite of mechanistic pathways, by which nanostructured block copolymers can align with an electric field. Our results further unveil the benefit of electric field assisted annealing for mitigating orientational disorder and topological defects in block copolymer mesophases, both in close vicinity to the order-disorder transition and well below it.

摘要

外电场通过旋转晶粒或成核和生长来排列纳米结构嵌段共聚物,这取决于化学性质截然不同的嵌段共聚物组分的分离程度。在接近有序-无序转变的情况下,理论和模拟表明存在第三种机制:选择性无序化。我们提出了一项时间分辨的小角 X 射线散射研究,证明了电场如何能够选择性地破坏溶致嵌段共聚物溶液中排列不良的片晶,而与施加电场平行的界面的片晶则占主导地位。本研究通过实验证实的一系列机制途径,为纳米结构嵌段共聚物与电场对齐增加了一种额外的机制。我们的研究结果进一步揭示了电场辅助退火在减轻嵌段共聚物介相中的取向无序和拓扑缺陷方面的好处,无论是在接近有序-无序转变的情况下,还是在远低于有序-无序转变的情况下。

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