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首页> 外文期刊>The Journal of Chemical Physics >Nanoprobe diffusion in entangled polymer solutions: Linear vs. unconcatenated ring chains
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Nanoprobe diffusion in entangled polymer solutions: Linear vs. unconcatenated ring chains

机译:Nanoprobe扩散在缠绕的聚合物溶液中:线性与未粘合的环链

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We employ large-scale molecular dynamics computer simulations to study the problem of nanoprobe diffusion in entangled solutions of linear polymers and unknotted and unconcatenated circular (ring) polymers. By tuning both the diameter of the nanoprobe and the density of the solution, we show that nanoprobes of diameter smaller than the entanglement distance (tube diameter) of the solution display the same (Rouse-like) behavior in solutions of both polymer architectures. Instead, nanoprobes with larger diameters appear to diffuse markedly faster in solutions of rings than in solutions of linear chains. Finally, by analysing the distribution functions of spatial displacements, we find that nanoprobe motion in rings' solutions shows both Gaussian and ergodic behaviors, in all regimes considered, while, in solutions of linear chains, nanoprobes exceeding the size of the tube diameter show a transition to non-Gaussian and non-ergodic motion. Our results emphasize the role of chain architecture in the motion of nanoprobes dispersed in polymer solutions. Published by AIP Publishing.
机译:我们采用大规模的分子动力学计算机模拟,研究纳米骨骨扩散在线性聚合物的缠结溶液中的问题,并不红细和不粘合的圆形(环)聚合物。通过调节纳米孔的直径和溶液的密度,我们表明直径小于溶液的缠结距离(管直径)的纳米素显示在两种聚合物架构的溶液中的相同(唤起类似)的行为。相反,较大直径的纳米植物似乎在环的溶液中显着弥散,而不是线性链的溶液。最后,通过分析空间位移的分布函数,我们发现RINGS解决方案中的Nanoprobe Motion展示了高斯和遍历的行为,在所有制度中都显示出在线性链的溶液中,纳米体纳压物超过管直径的尺寸显示过渡到非高斯和非遍历运动。我们的结果强调链架在分散在聚合物溶液中的纳米诡计运动中的作用。通过AIP发布发布。

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