Guo Fuchen, Li Ke, Wu Jiaxin, He Linli, Zhang Linxi
Department of Physics, Zhejiang University, Hangzhou 310027, China.
Department of Physics, Wenzhou University, Wenzhou 325035, China.
Polymers (Basel). 2020 Nov 11;12(11):2659. doi: 10.3390/polym12112659.
The effects of topological constraints on penetration structures of semi-flexible ring polymers in a melt are investigated using molecular dynamics simulations, considering simultaneously the effects of the chain stiffness. Three topology types of rings are considered: 0-knot (the unknotted), 3-knot and 6-knot ring polymers, respectively. With the improved algorithm to detect and quantify the inter-ring penetration (or inter-ring threading), the degree of ring threading does not increase monotonously with the chain stiffness, existing a peak value at the intermediate stiffness. It indicates that rings interpenetrate most at intermediate stiffness where there is a balance between coil expansion (favoring penetrations) and stiffness (inhibiting penetrations). Meanwhile, the inter-ring penetration would be suppressed with the knot complexity of the rings. The analysis of effective potential between the rings provides a better understanding for this non-monotonous behavior in inter-ring penetration.
利用分子动力学模拟研究了拓扑约束对熔体中半柔性环状聚合物穿透结构的影响,同时考虑了链刚度的影响。考虑了三种拓扑类型的环:分别为0结(无结)、3结和6结环状聚合物。通过改进的算法来检测和量化环间穿透(或环间穿线),环穿线程度并不随链刚度单调增加,而是在中间刚度处存在一个峰值。这表明在中间刚度下,环之间的相互穿透最为明显,此时在线团膨胀(有利于穿透)和刚度(抑制穿透)之间存在平衡。同时,环间穿透会随着环的结复杂性而受到抑制。对环之间有效势的分析为环间穿透的这种非单调行为提供了更好的理解。