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Translocation of Charged Polymers through a Nanopore in Monovalent and Divalent Salt Solutions: A Scaling Study Exploring over the Entire Driving Force Regimes

机译:带电荷的聚合物在单价和二价盐溶液中通过纳米孔的移位:在整个驱动力范围内进行的比例研究

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摘要

Langevin dynamics simulations are performed to study polyelectrolytes driven through a nanopore in monovalent and divalent salt solutions. The driving electric field E is applied inside the pore, and the strength is varied to cover the four characteristic force regimes depicted by a rederived scaling theory, namely the unbiased (UB) regime, the weakly-driven (WD) regime, the strongly-driven trumpet (SD(T)) regime and the strongly-driven isoflux (SD(I)) regime. By changing the chain length N, the mean translocation time is studied under the scaling form τNαEδ. The exponents α and δ are calculated in each force regime for the two studied salt cases. Both of them are found to vary with E and N and, hence, are not universal in the parameter’s space. We further investigate the diffusion behavior of translocation. The subdiffusion exponent γp is extracted. The three essential exponents νs, q, zp are then obtained from the simulations. Together with γp, the validness of the scaling theory is verified. Through a comparison with experiments, the location of a usual experimental condition on the scaling plot is pinpointed.
机译:进行Langevin动力学模拟以研究在单价和二价盐溶液中通过纳米孔驱动的聚电解质。驱动电场E施加在孔隙内部,并且强度发生变化,以覆盖通过重新缩放理论描述的四个特征力状态,即无偏(UB)状态,弱驱动(WD)状态,驱动小号(SD(T))方案和强驱动等流量(SD(I))方案。通过更改链长N,以缩放形式 τ N α E - δ 。指数 α δ 是针对两个研究的盐案件在每种受力情况下计算的。发现两者都随E和N的变化而变化,因此在参数空间中并不通用。我们进一步调查易位的扩散行为。子扩散指数 γ p 。三个基本指数 ν s ,q, z p <然后从仿真中获得/ math>。与 γ p ,验证了定标理论的有效性。通过与实验进行比较,可以确定标度图上通常实验条件的位置。

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