State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, People's Republic of China.
J Chem Phys. 2019 Feb 14;150(6):064902. doi: 10.1063/1.5085178.
We investigate the diffusion dynamics of a single polymer strongly adsorbed on surfaces in an extremely broad chain length and surface roughness by means of molecular dynamics simulations. Our simulations demonstrate that with the increase in chain length, the diffusion dynamics of polymer chains exhibits three regimes: the Rouse dynamics with D ∼ N when the lateral size of polymer chains is smaller than a half of distance between obstacles on rough surfaces; the reptationlike dynamics with D ∼ N and τ ∼ N when the obstacles inhibit the freely Rouse behavior of polymer chains; and the quasi-Rouse dynamics with D ∼ N and τ ∼ N when the height of obstacles is smaller than twice the vertical size of polymer chains, where D, N, and τ are the diffusion coefficient, chain length, and end-to-end vector relaxation time of polymer chains, respectively. The long chains have sufficient conformation entropy to form loops to hop over short obstacles, which could dramatically reduce the confinement from obstacles on the rough surfaces and changes the diffusion and relaxation dynamics of polymer chains from the reptationlike dynamics to the quasi-Rouse dynamics. Our results reveal the whole diffusion dynamics of polymer chains strongly adsorbed on rough surfaces and clarify the corresponding transition mechanism, which is significant for the understanding of the physical nature and the development of the corresponding applications.
我们通过分子动力学模拟研究了在极其广泛的链长和表面粗糙度范围内,单个高分子强烈吸附在表面上的扩散动力学。我们的模拟表明,随着链长的增加,高分子链的扩散动力学呈现出三个区域:当高分子链的横向尺寸小于粗糙表面上障碍物之间距离的一半时,呈现出 Rouse 动力学,扩散系数 D∼N;当障碍物抑制高分子链的自由 Rouse 行为时,呈现出类蠕动动力学,扩散系数 D∼N,松弛时间 τ∼N;当障碍物的高度小于高分子链的垂直尺寸的两倍时,呈现出准 Rouse 动力学,扩散系数 D∼N,松弛时间 τ∼N。长链具有足够的构象熵来形成环以跳过短的障碍物,这可以显著减少粗糙表面上障碍物的限制,并将高分子链的扩散和松弛动力学从类蠕动动力学转变为准 Rouse 动力学。我们的结果揭示了强烈吸附在粗糙表面上的高分子链的整体扩散动力学,并阐明了相应的转变机制,这对于理解物理性质和发展相应的应用具有重要意义。