Agrawal Anupriya, Perahia Dvora, Grest Gary S
Department of Chemistry, Clemson University, Clemson, South Carolina 29634, USA.
Department of Mechanical Engineering and Materials Science, Washington University in St. Louis, St. Louis, Missouri 63130, USA.
Phys Rev Lett. 2016 Apr 15;116(15):158001. doi: 10.1103/PhysRevLett.116.158001. Epub 2016 Apr 11.
Reaching exceptionally long times up to 500 ns in equilibrium and nonequilibrium molecular dynamics simulations studies, we have attained a fundamental molecular understanding of the correlation of ionomer clusters structure and multiscale dynamics, providing new insight into one critical, long-standing challenge in ionic polymer physics. The cluster structure in melts of sulfonated polystyrene with Na^{+} and Mg^{2+} counterions are resolved and correlated with the dynamics on multiple length and time scales extracted from measurements of the dynamic structure factor and shear rheology. We find that as the morphology of the ionic clusters changes from ladderlike for Na^{+} to disordered structures for Mg^{2+}, the dynamic structure factor is affected on the length scale corresponding to the ionic clusters. Rheology studies show that the viscosity for Mg^{2+} melts is higher than for Na^{+} ones for all shear rates, which is well correlated with the larger ionic clusters' size for the Mg^{2+} melts.
在平衡和非平衡分子动力学模拟研究中,我们达到了长达500纳秒的超长模拟时间,从而对离聚物簇结构与多尺度动力学之间的相关性有了基本的分子层面理解,为离子聚合物物理学中一个关键的、长期存在的挑战提供了新的见解。对含有Na⁺和Mg²⁺抗衡离子的磺化聚苯乙烯熔体中的簇结构进行了解析,并将其与从动态结构因子和剪切流变学测量中提取的多个长度和时间尺度上的动力学相关联。我们发现,随着离子簇的形态从Na⁺的梯状结构变为Mg²⁺的无序结构,动态结构因子在与离子簇对应的长度尺度上受到影响。流变学研究表明,在所有剪切速率下,Mg²⁺熔体的粘度都高于Na⁺熔体,这与Mg²⁺熔体中较大的离子簇尺寸密切相关。