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三嵌段共聚物熔体的耗散粒子动力学:中等分离度下的中间嵌段构象研究

Dissipative particle dynamics of triblock copolymer melts: a midblock conformational study at moderate segregation.

作者信息

Tallury Syamal S, Spontak Richard J, Pasquinelli Melissa A

机构信息

Department of Materials Science and Engineering, North Carolina State University, Raleigh, North Carolina 27695, USA.

Fiber and Polymer Science Program, North Carolina State University, Raleigh, North Carolina 27695, USA.

出版信息

J Chem Phys. 2014 Dec 28;141(24):244911. doi: 10.1063/1.4904388.

Abstract

As thermoplastic elastomers, triblock copolymers constitute an immensely important class of shape-memory soft materials due to their unique ability to form molecular networks stabilized by physical, rather than chemical, cross-links. The extent to which such networks develop in triblock and higher-order multiblock copolymers is sensitive to the formation of midblock bridges, which serve to connect neighboring microdomains. In addition to bridges, copolymer molecules can likewise form loops and dangling ends upon microphase separation or they can remain unsegregated. While prior theoretical and simulation studies have elucidated the midblock bridging fraction in triblock copolymer melts, most have only considered strongly segregated systems wherein dangling ends and unsegregated chains become relatively insignificant. In this study, simulations based on dissipative particle dynamics are performed to examine the self-assembly and networkability of moderately segregated triblock copolymers. Utilizing a density-based cluster-recognition algorithm, we demonstrate how the simulations can be analyzed to extract information about microdomain formation and permit explicit quantitation of the midblock bridging, looping, dangling, and unsegregated fractions for linear triblock copolymers varying in chain length, molecular composition, and segregation level. We show that midblock conformations can be sensitive to variations in chain length, molecular composition, and bead repulsion, and that a systematic investigation can be used to identify the onset of strong segregation where the presence of dangling and unsegregated fractions are minimal. In addition, because this clustering approach is robust, it can be used with any particle-based simulation method to quantify network formation of different morphologies for a wide range of triblock and higher-order multiblock copolymer systems.

摘要

作为热塑性弹性体,三嵌段共聚物由于其独特的能力,能够形成由物理交联而非化学交联稳定的分子网络,因而构成了一类极其重要的形状记忆软材料。在三嵌段和高阶多嵌段共聚物中,此类网络的发展程度对中间嵌段桥的形成很敏感,中间嵌段桥用于连接相邻的微区。除了桥之外,共聚物分子在微相分离时同样可以形成环和悬垂端,或者它们可以保持不分离的状态。虽然先前的理论和模拟研究已经阐明了三嵌段共聚物熔体中的中间嵌段桥接分数,但大多数研究只考虑了强分离体系,其中悬垂端和未分离的链变得相对不重要。在本研究中,基于耗散粒子动力学进行了模拟,以研究中等分离的三嵌段共聚物的自组装和可网络化能力。利用基于密度的聚类识别算法,我们展示了如何分析模拟结果以提取有关微区形成的信息,并允许明确量化线性三嵌段共聚物的中间嵌段桥接、成环、悬垂和未分离分数,这些共聚物的链长、分子组成和分离水平各不相同。我们表明,中间嵌段构象可能对链长、分子组成和珠子排斥力的变化敏感,并且可以使用系统研究来确定强分离的起始点,此时悬垂和未分离分数的存在最小。此外,由于这种聚类方法很稳健,它可以与任何基于粒子的模拟方法一起使用,以量化各种三嵌段和高阶多嵌段共聚物体系的不同形态的网络形成。

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