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首页> 外文期刊>The Journal of Chemical Physics >Three-dimensional Brownian diffusion of rod-like macromolecules in the presence of randomly distributed spherical obstacles: Molecular dynamics simulation
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Three-dimensional Brownian diffusion of rod-like macromolecules in the presence of randomly distributed spherical obstacles: Molecular dynamics simulation

机译:球形随机障碍物存在下棒状大分子的三维布朗扩散:分子动力学模拟

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摘要

Brownian diffusion of rod-like polymers in the presence of randomly distributed spherical obstacles is studied using molecular dynamics simulations. It is observed that dependence of the reduced diffusion coefficient of these macromolecules on the available volume fraction can be described reasonably by a power law function. Despite the case of obstructed diffusion of flexible polymers in which reduced diffusion coefficient has a weak dependence on the polymer length, this dependence is noticeably strong in the case of rod-like polymers. Diffusion of these macromolecules in the presence of obstacles is observed that is anomalous at short time scales and normal at long times. Duration time of the anomalous diffusion regime is found that increases very rapidly with increasing both the polymer length and the obstructed volume fraction. Dynamics of diffusion of these polymers is observed that crosses over from Rouse to reptation type with increasing the density of obstacles.
机译:使用分子动力学模拟研究了杆状聚合物在随机分布的球形障碍物存在下的布朗扩散。可以观察到,这些大分子的降低的扩散系数对可用体积分数的依赖性可以通过幂律函数合理地描述。尽管柔性聚合物的扩散受阻,其中降低的扩散系数对聚合物长度具有较弱的依赖性,但是在棒状聚合物的情况下,这种依赖性非常明显。观察到这些大分子在存在障碍物时的扩散在短时间尺度上是异常的,而在长时间内是正常的。发现异常扩散状态的持续时间随着聚合物长度和受阻体积分数的增加而迅速增加。观察到这些聚合物的扩散动力学随着障碍物密度的增加而从Rouse过渡到reptation类型。

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