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Modeling competitive substitution in a polyelectrolyte complex

机译:模拟聚电解质复合物中的竞争性取代

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We have simulated the invasion of a polyelectrolyte complex made of a polycation chain and a polyanion chain, by another longer polyanion chain, using the coarse-grained united atom model for the chains and the Langevin dynamics methodology. Our simulations reveal many intricate details of the substitution reaction in terms of conformational changes of the chains and competition between the invading chain and the chain being displaced for the common complementary chain. We show that the invading chain is required to be sufficiently longer than the chain being displaced for effecting the substitution. Yet, having the invading chain to be longer than a certain threshold value does not reduce the substitution time much further. While most of the simulations were carried out in salt-free conditions, we show that presence of salt facilitates the substitution reaction and reduces the substitution time. Analysis of our data shows that the dominant driving force for the substitution process involving polyelectrolytes lies in the release of counterions during the substitution. (C) 2015 AIP Publishing LLC.
机译:我们使用链的粗粒联合原子模型和Langevin动力学方法,模拟了另一个更长的聚阴离子链对聚阳离子链和聚阴离子链构成的聚电解质复合物的入侵。我们的模拟揭示了取代反应的许多复杂细节,包括链的构象变化以及入侵链与被置换的链之间的竞争(共同互补链)。我们表明,入侵链需要比被置换的链足够长才能实现取代。但是,使入侵链长于某个阈值并不会进一步减少替换时间。虽然大多数模拟是在无盐条件下进行的,但我们表明盐的存在促进了取代反应并减少了取代时间。我们的数据分析表明,涉及聚电解质的置换过程的主要驱动力在于置换过程中抗衡离子的释放。 (C)2015 AIP Publishing LLC。

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