Ghavami Ali, Kobayashi Hideki, Winkler Roland G
Institute for Advanced Simulation, Forschungszentrum Jülich GmbH, 52425 Jülich, Germany.
J Chem Phys. 2016 Dec 28;145(24):244902. doi: 10.1063/1.4972893.
We analyze the dynamics of polymers in a microgel system under different swelling conditions. A microgel particle consists of coarse-grained linear polymers which are tetra-functionally crosslinked and undergoes conformational changes in response to the external stimuli. Here, a broad range of microgel sizes, extending from tightly collapsed to strongly swollen particles, is considered. In order to account for hydrodynamic interactions, the microgel is embedded in a multiparticle collision dynamics fluid while hydrophobic attraction is modelled by an attractive Lennard-Jones potential and swelling of ionic microgels is described through the Debye-Hückel potential. The polymer dynamics is analyzed in terms of the monomer mean square displacement and the intermediate scattering function S(q, t). The scattering function decays in a stretched-exponential manner, with a decay rate exhibiting a crossover from a collective diffusive dynamics at low magnitudes of the wavevector q to a hydrodynamic-dominated dynamics at larger q. There is little difference between the intermediate scattering functions of microgels under good solvent conditions and strongly swollen gels, but strongly collapsed gels exhibit a faster decay at short times and hydrodynamic interactions become screened. In addition, we present results for the dynamics of the crosslinks, which exhibit an unexpected, semiflexible polymer-like dynamics.
我们分析了在不同溶胀条件下微凝胶系统中聚合物的动力学。微凝胶颗粒由粗粒化的线性聚合物组成,这些聚合物通过四官能团交联,并会响应外部刺激而发生构象变化。在此,我们考虑了从紧密塌陷到强烈溶胀颗粒的广泛微凝胶尺寸范围。为了考虑流体动力学相互作用,将微凝胶嵌入多粒子碰撞动力学流体中,同时通过吸引性的 Lennard-Jones 势对疏水吸引力进行建模,并通过德拜-休克尔势描述离子微凝胶的溶胀。从单体均方位移和中间散射函数 S(q, t) 方面分析聚合物动力学。散射函数以拉伸指数方式衰减,衰减率在低波矢 q 时从集体扩散动力学转变为在较大 q 时以流体动力学为主导的动力学。在良溶剂条件下的微凝胶和强烈溶胀凝胶的中间散射函数之间几乎没有差异,但强烈塌陷的凝胶在短时间内表现出更快的衰减,并且流体动力学相互作用被屏蔽。此外,我们给出了交联动力学的结果,其表现出意想不到的半柔性聚合物样动力学。