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使用布朗动力学模拟研究稀溶液体系中蝌蚪状聚合物链的结构与流变行为的标度关系

Scaling Relationships of the Structural and Rheological Behavior of Tadpole Polymer Chains in Dilute Solution Systems Using Brownian Dynamics Simulations.

作者信息

Cho Chaehyun, Kim Jun Mo

机构信息

Department of Chemical Engineering, Kyonggi University, 154-42 Gwanggyosan-ro, Yeongtong-gu, Suwon 16227, Kyonggi-do, Republic of Korea.

出版信息

Polymers (Basel). 2024 Oct 11;16(20):2871. doi: 10.3390/polym16202871.

Abstract

Tadpole polymers, also known as lasso polymers, feature molecular structures that combine a single ring with a single linear side branch, leading to distinct conformational, dynamical, and rheological characteristics compared to their corresponding counterparts, particularly pure linear and pure ring polymers. To elucidate the mechanisms underlying these distinctive behaviors, comprehensive mesoscopic Brownian dynamics (BD) simulations of dilute solution systems of tadpole polymers were conducted using a bead-rod chain model under both equilibrium and flow conditions. Three types of tadpole polymer chains were prepared by varying the ring-to-linear ratio within the tadpole chain and comparing them with the corresponding linear and ring chains. Depending on this ratio, tadpole polymer chains exhibit entirely different structural properties and rotational dynamics, both in equilibrium and under shear flow. As the linear proportion within the tadpole chain increased, the structural, dynamic, and rheological properties of the tadpole polymer chains became more similar to those of pure linear polymers. Conversely, with an increasing ring proportion, these properties began to resemble those of pure ring polymers. Based on these observed tendencies, a simple general scaling expression is proposed for tadpole polymer properties that integrates scaling expressions for both pure linear and pure ring polymers. Our results indicate that the conformational, dynamic, and rheological properties of tadpole polymers, as predicted by these simple scaling expressions, are in good agreement with the simulated values, a result we consider statistically significant.

摘要

蝌蚪聚合物,也被称为套索聚合物,其分子结构将单个环与单个线性侧链相结合,与相应的同类聚合物,特别是纯线性和纯环聚合物相比,具有独特的构象、动力学和流变学特性。为了阐明这些独特行为背后的机制,在平衡和流动条件下,使用珠杆链模型对蝌蚪聚合物稀溶液体系进行了全面的介观布朗动力学(BD)模拟。通过改变蝌蚪链内环与线性部分的比例制备了三种类型的蝌蚪聚合物链,并将它们与相应的线性链和环链进行比较。根据该比例,蝌蚪聚合物链在平衡状态和剪切流动下均表现出完全不同的结构性质和旋转动力学。随着蝌蚪链中线性部分比例的增加,蝌蚪聚合物链的结构、动力学和流变学性质变得更类似于纯线性聚合物。相反,随着环部分比例的增加,这些性质开始类似于纯环聚合物。基于这些观察到的趋势,提出了一个简单的通用标度表达式来描述蝌蚪聚合物的性质,该表达式整合了纯线性和纯环聚合物的标度表达式。我们的结果表明,这些简单标度表达式预测的蝌蚪聚合物的构象、动力学和流变学性质与模拟值吻合良好,我们认为这一结果具有统计学意义。

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