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受限在纳米孔中的嵌段共聚物:在弯曲且令人沮丧的平面中的寻路

Block copolymers confined in a nanopore: pathfinding in a curving and frustrating flatland.

作者信息

Sevink G J A, Zvelindovsky A V

机构信息

Leiden Institute of Chemistry, Leiden University, PO Box 9502, 2300 RA Leiden, The Netherlands.

出版信息

J Chem Phys. 2008 Feb 28;128(8):084901. doi: 10.1063/1.2829406.

Abstract

We have studied structure formation in a confined block copolymer melt by means of dynamic density functional theory. The confinement is two dimensional, and the confined geometry is that of a cylindrical nanopore. Although the results of this study are general, our coarse-grained molecular model is inspired by an experimental lamella-forming polysterene-polybutadiene diblock copolymer system [K. Shin et al., Science 306, 76 (2004)], in which an exotic toroidal structure was observed upon confinement in alumina nanopores. Our computational study shows that a zoo of exotic structures can be formed, although the majority, including the catenoid, helix, and double helix that were also found in Monte Carlo nanopore studies, are metastable states. We introduce a general classification scheme and consider the role of kinetics and elongational pressure on stability and formation pathway of both equilibrium and metastable structures in detail. We find that helicity and threefold connections mediate structural transitions on a larger scale. Moreover, by matching the remaining parameter in our mesoscopic method, the Flory-Huggins parameter chi, to the experimental system, we obtain a structure that resembles the experimental toroidal structure in great detail. Here, the most important factor seems to be the roughness of the pore, i.e., small variations of the pore radius on a scale that is larger than the characteristic size in the system.

摘要

我们通过动态密度泛函理论研究了受限嵌段共聚物熔体中的结构形成。这种限制是二维的,受限几何形状为圆柱形纳米孔。尽管本研究的结果具有普遍性,但我们的粗粒化分子模型是受一个实验性的形成片层的聚苯乙烯 - 聚丁二烯二嵌段共聚物体系[K. Shin等人,《科学》306, 76 (2004)]启发而来,在该体系中,当被限制在氧化铝纳米孔中时观察到了一种奇特的环形结构。我们的计算研究表明,可以形成一系列奇特的结构,尽管大多数结构,包括在蒙特卡罗纳米孔研究中也发现的链状、螺旋状和双螺旋状结构,都是亚稳态。我们引入了一种通用的分类方案,并详细考虑了动力学和拉伸压力对平衡态和亚稳态结构的稳定性及形成途径的作用。我们发现螺旋度和三重连接在更大尺度上介导结构转变。此外,通过将我们介观方法中的剩余参数,即弗洛里 - 哈金斯参数χ,与实验体系相匹配,我们得到了一种与实验环形结构非常相似的结构。在这里,最重要的因素似乎是孔的粗糙度,即在大于体系特征尺寸的尺度上孔半径的微小变化。

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引用本文的文献

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Semicrystalline Block Copolymers in Rigid Confining Nanopores.
Macromolecules. 2017 Nov 14;50(21):8637-8646. doi: 10.1021/acs.macromol.7b01567. Epub 2017 Oct 18.

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