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双嵌段环作为不相容聚合物界面处的拓扑粘合剂。

Diblock Rings as Topological Adhesives at Immiscible Polymer Interfaces.

作者信息

Wijesekera Andrew, Vigil Daniel L, Grest Gary S, Zhang Siteng, Ge Ting

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208, United States.

Sandia National Laboratories, Albuquerque, New Mexico 87185, United States.

出版信息

ACS Macro Lett. 2024 Oct 15;13(10):1311-1317. doi: 10.1021/acsmacrolett.4c00446. Epub 2024 Sep 18.

Abstract

Disparate polymers often do not mix well, and the resulting immiscible interfaces are mechanically weaker than the bulk, which is undesirable for many technological applications. Large-scale molecular simulations are performed to demonstrate the effectiveness of diblock ring polymers as a new type of adhesive for immiscible polymer interfaces. The peak stress σ and the failure strain γ upon shear deformation approach the bulk values with increasing diblock ring length and coverage. Breaking the diblock rings into pairs of diblock linear chains creates a reference system for comparison. The diblock rings increase both σ and γ compared to the diblock linear chains at the same coverage. Further topological analysis based on the Gauss Linking Number reveals that the threading of diblock rings by linear chains from the two opposite sides is the key mechanism for stronger adhesion, which is analogous to the hook-and-loop process in Velcro tape.

摘要

不同的聚合物通常混合得不好,由此产生的不相容界面在机械性能上比本体更弱,这在许多技术应用中是不可取的。进行大规模分子模拟以证明双嵌段环状聚合物作为一种新型不相容聚合物界面粘合剂的有效性。随着双嵌段环长度和覆盖率的增加,剪切变形时的峰值应力σ和破坏应变γ接近本体值。将双嵌段环分解为双嵌段线性链对创建了一个用于比较的参考体系。在相同覆盖率下,与双嵌段线性链相比,双嵌段环增加了σ和γ。基于高斯链环数的进一步拓扑分析表明,来自两侧的线性链穿过双嵌段环是实现更强粘附力的关键机制,这类似于魔术贴胶带中的钩环过程。

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