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Conformation change of an isotactic poly (N-isopropylacrylamide) membrane: Molecular dynamics

机译:全同立构多(N-异丙基丙烯酰胺)膜的构象变化:分子动力学

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In this work, isotactic Poly (N-Isopropylacrylamide)-PNIPAM-in neat water and in electrolyte solutions is studied by means of molecular dynamics simulations. This is done for an infinitely diluted oligomer and for an assembly of several PNIPAM chains arranged into a planar membrane configuration with a core-shell morphology. We employed two different force fields, AMBER (assisted model building with energy refinement) and OPLS-AA (all atom - optimized potentials for liquid simulations) in combination with extended simple point charge water. Despite the more water insoluble character of isotactic oligomers, our results support the existence of a coil to globule transition for the isolated 30-mer. This may imply the existence of an oligomer rich phase of coil-like structures in equilibrium with a water rich phase for temperatures close but below the coil to globule transition temperature, T-Theta. However, the obtained coil structure is much more compact than that corresponding to the syndiotactic chain. Our estimations of T-Theta are (308 +/- 5) K and (303 +/- 5) K for AMBER and OPLS-AA, respectively. The membrane configuration allows one to include chain-chain interactions, to follow density profiles of water, polymer, and solutes, and accessing the membrane-water interface tension. Results show gradual shrinking and swelling of the membrane by switching temperature above and below T-Theta, as well as the increase and decrease of the membrane-water interface tension. Finally, concentration profiles for 1M NaCl and 1M NaI electrolytes are shown, depicting a strong salting-out effect for NaCl and a much lighter effect for NaI, in good qualitative agreement with experiments. Published by AIP Publishing.
机译:在这项工作中,通过分子动力学模拟研究了全同型聚(N-异丙基丙烯酰胺)-pniPam-in纯水和电解质溶液。这是针对无限稀释的低聚物进行的,并且对于具有核心壳形态的平面膜构型布置成平面膜构型的几个肺链的组装。我们采用了两种不同的力领域,琥珀(辅助模型建筑,带有能量细化的辅助模型)和OPLS-AA(所有原子优化的液体模拟电位)与延长的简单点电荷相结合。尽管样品寡聚体的水不溶性特性越多,但我们的结果支持卷材的存在,以使隔离30-MER的球滚筒过渡。这可能意味着存在于富含水分的线圈状结构的低聚物富相位的富相位,用于近距离接近的温度,但在线圈下方到球状过渡温度,T-Theta。然而,所获得的线圈结构比对应于Syndotic Clip的线圈结构要紧凑。了T-θ的估计分别用于AMBER和OPLS-AA,(308 +/- 5)K和(303 +/- 5)K。膜构造允许人们包括链链相互作用,以遵循水,聚合物和溶质的密度谱,并进入膜 - 水界面张力。结果表明,通过切换高于和下方的T-THA,以及膜 - 水界面张力的增加和降低,逐渐缩小和膨胀。最后,示出了1M NaCl和1M NaI电解质的浓度曲线,描绘了NaCl的强盐输出效果和NAI的更轻的效果,与实验良好的定性协议。通过AIP发布发布。

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