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弱聚离子刷的全原子分子动力学模拟:电荷密度对聚电解质链、刷负载抗衡离子和水分子性质的影响。

All-atom molecular dynamics simulations of weak polyionic brushes: influence of charge density on the properties of polyelectrolyte chains, brush-supported counterions, and water molecules.

作者信息

Sachar Harnoor Singh, Pial Turash Haque, Chava Bhargav Sai, Das Siddhartha

机构信息

Department of Mechanical Engineering, University of Maryland, 4298 Campus Drive, College Park, MD 20742, USA.

出版信息

Soft Matter. 2020 Aug 26;16(33):7808-7822. doi: 10.1039/d0sm01000f.

Abstract

All atom molecular dynamics (MD) simulations of planar Na+-counterion-neutralized polyacrylic acid (PAA) brushes are performed for varying degrees of ionization (and thereby varying charge density) and varying grafting density. Variation in the PE charge density (or degree of ionization) and grafting density leads to massive changes of the properties of the PE molecules (quantified by the changes in the height and the mobility of the PE brushes) as well as the local arrangement and distribution of the brush-supported counterions and water molecules within the brushes. The effect on the counterions is manifested by the corresponding variation of the counterion mobility, counterion concentration, extent of counterion binding to the charged site of the PE brushes, water-in-salt-like structure formation, and counterion-water-oxygen radial distribution function within the PE brushes. On the other hand, the effect on water molecules is manifested by the corresponding variation of water-oxygen-water-oxygen RDF, local water density, water-water and water-PE functional group hydrogen bond networks, static dielectric constant of water molecules, orientational tetrahedral order parameter, and water mobility. Enforcing such varying degree of ionization of weak polyelectrolytes is possible by changing the pH of the surrounding medium. Thus, our results provide insights into the changes in microstructure (at the atomistic level) of weak polyionic brushes at varying pH. We anticipate that this knowledge will prove to be vital for the efficient design of several nano-scale systems employing PE brushes such as nanomechanical gates, current rectifiers, etc.

摘要

对平面钠离子中和的聚丙烯酸(PAA)刷进行了全原子分子动力学(MD)模拟,模拟了不同程度的电离(从而电荷密度不同)和不同的接枝密度。聚电解质电荷密度(或电离度)和接枝密度的变化导致聚电解质分子性质发生巨大变化(通过聚电解质刷的高度和迁移率变化来量化),以及刷支撑的抗衡离子和水分子在刷内的局部排列和分布发生变化。对抗衡离子的影响表现为抗衡离子迁移率、抗衡离子浓度、抗衡离子与聚电解质刷带电位点的结合程度、类水合盐结构形成以及聚电解质刷内抗衡离子 - 水 - 氧径向分布函数的相应变化。另一方面,对水分子的影响表现为水 - 氧 - 水 - 氧径向分布函数、局部水密度、水 - 水和水 - 聚电解质官能团氢键网络、水分子的静态介电常数、取向四面体序参数以及水迁移率的相应变化。通过改变周围介质的pH值,可以实现对弱聚电解质电离程度的改变。因此,我们的结果提供了对不同pH值下弱聚离子刷微观结构(原子水平)变化的见解。我们预计,这些知识对于有效设计使用聚电解质刷的几种纳米级系统(如纳米机械门、电流整流器等)至关重要。

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