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疏水相互作用和氢键效应影响下的水性溶剂混合物中的聚电解质构象转变:聚丙烯酸-水-乙醇体系

Polyelectrolyte conformational transition in aqueous solvent mixture influenced by hydrophobic interactions and hydrogen bonding effects: PAA-water-ethanol.

作者信息

Sappidi Praveenkumar, Natarajan Upendra

机构信息

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

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

出版信息

J Mol Graph Model. 2016 Mar;64:60-74. doi: 10.1016/j.jmgm.2015.12.004. Epub 2015 Dec 23.

Abstract

Molecular dynamics simulations of poly(acrylic acid) PAA chain in water-ethanol mixture were performed for un-ionized and ionized cases at different degree-of-ionization 0%, 80% and 100% of PAA chain by Na(+) counter-ions and co-solvent (ethanol) concentration in the range 0-90vol% ethanol. Aspects of structure and dynamics were investigated via atom pair correlation functions, number and relaxation of hydrogen bonds, nearest-neighbor coordination numbers, and dihedral angle distribution function for back-bone and side-groups of the chain. With increase in ethanol concentration, chain swelling is observed for un-ionized chain (f=0) and on the contrary chain shrinkage is observed for partially and fully ionized cases (i.e., f=0.8 and 1). For un-ionized PAA, with increase in ethanol fraction ϕeth the number of PAA-ethanol hydrogen bonds increases while PAA-water decreases. Increase in ϕeth leads to PAA chain expansion for un-ionized case and chain shrinkage for ionized case, in agreement with experimental observations on this system. For ionized-PAA case, chain shrinkage is found to be influenced by intermolecular hydrogen bonding with water as well as ethanol. The localization of ethanol molecules near the un-ionized PAA backbone at higher levels of ethanol is facilitated by a displacement of water molecules indicating presence of specific ethanol hydration shell, as confirmed by results of the RDF curves and coordination number calculations. This behavior, controlled by hydrogen bonding provides a significant contribution to such a conformational transition behavior of the polyelectrolyte chain. The interactions between counter-ions and charges on the PAA chain also influence chain collapse. The underlying origins of polyelectrolyte chain collapse in water-alcohol mixtures are brought out for the first time via explicit MD simulations by this study.

摘要

在水 - 乙醇混合体系中,针对聚丙烯酸(PAA)链的未电离和电离情况进行了分子动力学模拟。未电离情况的电离度为0%,电离情况分别为80%和100%的PAA链,由Na⁺抗衡离子进行电离,共溶剂(乙醇)浓度范围为0 - 90体积%乙醇。通过原子对相关函数、氢键的数量和弛豫、最近邻配位数以及链主链和侧基的二面角分布函数,研究了结构和动力学方面的问题。随着乙醇浓度的增加,未电离链(f = 0)出现链膨胀现象,而部分电离和完全电离情况(即f = 0.8和1)则出现链收缩现象。对于未电离的PAA,随着乙醇分数ϕeth的增加,PAA - 乙醇氢键数量增加,而PAA - 水氢键数量减少。ϕeth的增加导致未电离情况下PAA链膨胀,电离情况下链收缩,这与该体系的实验观察结果一致。对于电离的PAA情况,发现链收缩受与水以及乙醇的分子间氢键影响。较高乙醇含量时,乙醇分子在未电离PAA主链附近的定位因水分子的位移而得以促进,这表明存在特定的乙醇水合壳,径向分布函数(RDF)曲线和配位数计算结果证实了这一点。这种由氢键控制的行为对聚电解质链的这种构象转变行为有重大贡献。抗衡离子与PAA链上电荷之间的相互作用也会影响链的塌缩。本研究首次通过显式分子动力学模拟揭示了水 - 醇混合体系中聚电解质链塌缩的潜在根源。

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