Goto Shota, Kim Kang, Matubayasi Nobuyuki
Division of Chemical Engineering, Department of Materials Engineering Science, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan.
J Chem Phys. 2021 Sep 28;155(12):124901. doi: 10.1063/5.0061281.
The dynamics of ring polymer melts are studied via molecular dynamics simulations of the Kremer-Grest bead-spring model. Rouse mode analysis is performed in comparison with linear polymers by changing the chain length. Rouse-like behavior is observed in ring polymers by quantifying the chain length dependence of the Rouse relaxation time, whereas a crossover from Rouse to reptation behavior is observed in linear polymers. Furthermore, the non-Gaussian parameters of the monomer bead displacement and chain center-of-mass displacement are analyzed. It is found that the non-Gaussianity of ring polymers is remarkably suppressed with slight growth for the center-of-mass dynamics at long chain length, which is in contrast to the growth in linear polymers for both the monomer bead and center-of-mass dynamics.
通过对Kremer-Grest珠簧模型进行分子动力学模拟,研究了环形聚合物熔体的动力学。通过改变链长,与线性聚合物进行比较,进行了Rouse模式分析。通过量化Rouse弛豫时间的链长依赖性,在环形聚合物中观察到类似Rouse的行为,而在线性聚合物中观察到从Rouse行为到reptation行为的转变。此外,分析了单体珠位移和链质心位移的非高斯参数。结果发现,在长链长度下,环形聚合物的非高斯性随着质心动力学的轻微增长而显著受到抑制,这与线性聚合物中单体珠和质心动力学的增长形成对比。