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Interplay between chain stiffness and excluded volume of semiflexible polymers confined in nanochannels

机译:链刚度与限制在纳米通道中的半柔性聚合物的排除体积之间的相互作用

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The properties of channel-confined semiflexible polymers are determined by a complicated interplay of chain stiffness and excluded volume effects. Using Pruned-Enriched Rosenbluth Method (PERM) simulations, we study the equilibrium properties of channel-confined polymers by systematically controlling chain stiffness and excluded volume. Our calculations of chain extension and confinement free energy for freely jointed chains with and without excluded volume show excellent agreement with theoretical predictions. For ideal wormlike chains, the extension is seen to crossover from Odijk behavior in strong confinement to zero-stretching, bulk-like behavior in weak confinement. In contrast, for self-avoiding wormlike chains, we always observe that the linear scaling of the extension with the contour length is valid in the long-chain limit irrespective of the regime of confinement, owing to the coexistence of stiffness and excluded volume effects. We further propose that the long-chain limit for the extension corresponds to chain lengths wherein the projection of the end-to-end distance along the axis of the channel is nearly equal to the mean span parallel to the axis. For DNA in nanochannels, this limit was identified using PERM simulations out to molecular weights of more than 1 megabase pairs; the molecular weight of λ-DNA is found to exhibit nearly asymptotic fractional extension for channels sizes used commonly in experiments.
机译:通道受限的半柔性聚合物的性能取决于链刚度和排除的体积效应之间的复杂相互作用。使用修剪富集罗森布鲁斯方法(PERM)模拟,我们通过系统地控制链刚度和排除体积来研究通道受限聚合物的平衡特性。我们对有和没有排除体积的自由连接链的链扩展和限制自由能的计算与理论预测非常吻合。对于理想的蠕虫状链,可以看到其扩展范围从强约束条件下的Odijk行为过渡到弱约束条件下的零拉伸,类体积行为。相反,对于自避式蠕虫状链,由于刚度和排除的体积效应的共同影响,我们始终会观察到,在长链极限中,具有轮廓长度的延伸部分的线性缩放是有效的,而与约束方式无关。我们进一步提出,延伸的长链极限对应于链长,其中,沿通道轴线的端到端距离的投影几乎等于平行于该轴线的平均跨度。对于纳米通道中的DNA,使用PERM模拟确定分子量超过1兆碱基对的限制。对于实验中常用的通道大小,发现λ-DNA的分子量表现出接近渐近的分数延伸。

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