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化学性质和立构规整性在羧酸聚合物于油水界面吸附自由能中的复杂作用:分子动力学模拟

Complex role of chemical nature and tacticity in the adsorption free energy of carboxylic acid polymers at the oil-water interface: molecular dynamics simulations.

作者信息

Kurapati Raviteja, Natarajan Upendra

机构信息

Macromolecular Modeling and Simulation Laboratory, Department of Chemical Engineering, Indian Institute of Technology (IIT) Madras, Chennai, 600036, India.

出版信息

Phys Chem Chem Phys. 2023 Oct 18;25(40):27783-27797. doi: 10.1039/d3cp02754f.

Abstract

Scientific understanding of the molecular structure and adsorption of polymers at oil-water liquid interfaces is very limited. In this study the adsorption free energy at the oil (CCl)-water interface was estimated using umbrella sampling molecular dynamics simulations for six carboxylate type vinyl polymers differing in hydrophobic nature and tacticity: and poly(acrylic acid) (-PAA, -PAA), and poly(methacrylic acid) (-PMA, -PMA), and and poly(ethylacrylic acid) (-PEA, -PEA). Δ values are in the order -PMA < -PEA < -PEA < -PAA < -PAA < -PMA. The results show the significant and complex influence of the chemical nature as well as tacticity of the polymer on its adsorption free energy as related to hydrogen bonding and orientation of bonds with respect to oil and water phases. The influence of tacticity is found to be the highest for PMA, which is interpreted to occur due to the balance between interactions among side groups and those occurring between side groups and solvent. Interactions between side-groups are crucial for determining the conformation of PAA (most hydrophilic) and the solvation of the side-group in water is crucial for determining the conformation of PEA (most hydrophobic). The adsorption of PMA represents the transition between these two dominating effects. The molecular contributions to the enthalpy of adsorption indicate that adsorption is favored mainly through two interactions: polymer-CCl and water-water.

摘要

对聚合物在油水液界面的分子结构和吸附的科学理解非常有限。在本研究中,使用伞形抽样分子动力学模拟估算了六种疏水性和立构规整性不同的羧酸盐型乙烯基聚合物在油(CCl)-水界面的吸附自由能:聚(丙烯酸)(-PAA,-PAA)、聚(甲基丙烯酸)(-PMA,-PMA)和聚(乙基丙烯酸)(-PEA,-PEA)。Δ值的顺序为-PMA < -PEA < -PEA < -PAA < -PAA < -PMA。结果表明,聚合物的化学性质以及立构规整性对其吸附自由能有显著而复杂的影响,这与氢键以及键相对于油相和水相的取向有关。发现立构规整性对PMA的影响最大,这被解释为是由于侧基之间的相互作用与侧基和溶剂之间的相互作用达到平衡所致。侧基之间的相互作用对于确定PAA(最亲水)的构象至关重要,而侧基在水中的溶剂化对于确定PEA(最疏水)的构象至关重要。PMA的吸附代表了这两种主导效应之间的过渡。对吸附焓的分子贡献表明,吸附主要通过两种相互作用而受到促进:聚合物-CCl和水-水。

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