Institute for Physical Chemistry, Bulgarian Academia of Sciences, 1113 Sofia, Bulgaria.
Institute of Physics, Johannes Gutenberg University Mainz, Staudingerweg 7, 55128 Mainz, Germany.
J Chem Phys. 2017 May 21;146(19):194907. doi: 10.1063/1.4983131.
Semiflexible polymers in lyotropic solution confined inside spherical nanoscopic "containers" with repulsive walls are studied by molecular dynamics simulations and density functional theory, as a first step to model confinement effects on stiff polymers inside of miniemulsions, vesicles, and cells. It is shown that the depletion effects caused by the monomer-wall repulsion depend distinctly on the radius R of the sphere. Further, nontrivial orientational effects occur when R, the persistence length ℓ, and the contour length L of the polymers are of similar magnitude. At intermediate densities, a "shell" of wall-attached chains is forming, such that the monomers belonging to those chains are in a layer at about the distance of one monomer from the container wall. At the same time, the density of the centers of mass of these chains is peaked somewhat further inside, but still near the wall. However, the arrangement of chains is such that the total monomer density is almost uniform in the sphere, apart from a small layering peak at the wall. It is shown that excluded volume effects among the monomers are crucial to account for this behavior, although they are negligible for comparable isolated single semiflexible chains of the same length.
溶致性溶液中的半柔性聚合物被限制在具有排斥壁的球形纳米“容器”内,通过分子动力学模拟和密度泛函理论进行研究,作为模拟硬聚合物在微乳液、囊泡和细胞内受限效应的第一步。结果表明,单体-壁排斥引起的耗尽效应明显取决于球体的半径 R。此外,当 R、聚合物的持久长度 ℓ 和轮廓长度 L 具有相似的量级时,会出现复杂的取向效应。在中等密度下,会形成一层附着在壁上的链“壳”,使得属于这些链的单体位于距容器壁约一个单体的层中。同时,这些链的质心密度在稍远的内部峰值,但仍靠近壁。然而,链的排列方式使得除了在壁处的小分层峰之外,球体中的总单体密度几乎是均匀的。结果表明,单体之间的排斥体积效应对于解释这种行为至关重要,尽管对于相同长度的可比孤立的单个半柔性链来说,这种效应可以忽略不计。