Lin Chengjiang, Wei Hao, Li Hongfei, Duan Xiaozheng
State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, China.
School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei 230026, P. R. China.
Soft Matter. 2022 Feb 23;18(8):1603-1616. doi: 10.1039/d1sm01700d.
In this study, we use molecular dynamics simulation to explore the structures of anionic and cationic polyelectrolytes in aqueous solutions. We first confirm the significantly stronger solvation effects of single anions compared to cations in water at the fixed ion radii, due to the reversal orientations of asymmetric dipolar HO molecules around the ions. Based on this, we demonstrate that the solvation discrepancy of cations/anions and electrostatic correlations of ionic species can synergistically cause the nontrivial structural difference between single anionic and cationic polyelectrolytes. The cationic polyelectrolyte shows an extended structure whereas the anionic polyelectrolyte exhibits a collapsed structure, and their structural differences decline with increasing the counterion size. Furthermore, we corroborate that multiple cationic polyelectrolytes or multiple anionic polyelectrolytes can exhibit largely differential molecular architectures in aqueous solutions. In the solvation dominant regime, the polyelectrolyte solutions exhibit uniform structures; whereas, in the electrostatic correlation dominant regime, the polyelectrolyte solutions exhibit heterogeneous structures, in which the likely charged chains microscopically aggregate through counterion condensations. Increasing the intrinsic chain rigidity causes polyelectrolyte extension and hence moderately weakens the inter-chain clustering. Our work highlights the various, unique structures and molecular architectures of polyelectrolytes in solutions caused by the multi-body correlations between polyelectrolytes, counterions and asymmetric dipolar solvent molecules, which provides insights into the fundamental understanding of ion-containing polymers.
在本研究中,我们使用分子动力学模拟来探究水溶液中阴离子和阳离子聚电解质的结构。我们首先证实,在固定离子半径下,由于不对称偶极水分子在离子周围的反向取向,单个阴离子在水中的溶剂化效应明显强于阳离子。基于此,我们证明阳离子/阴离子的溶剂化差异和离子物种的静电相关性可以协同导致单个阴离子和阳离子聚电解质之间存在显著的结构差异。阳离子聚电解质呈现伸展结构,而阴离子聚电解质呈现塌陷结构,并且它们的结构差异随着抗衡离子尺寸的增加而减小。此外,我们证实多个阳离子聚电解质或多个阴离子聚电解质在水溶液中可以呈现出很大的分子结构差异。在溶剂化主导区域,聚电解质溶液呈现均匀结构;而在静电相关性主导区域,聚电解质溶液呈现异质结构,其中带电荷的链可能通过抗衡离子凝聚在微观上聚集。增加固有链刚性会导致聚电解质伸展,从而适度削弱链间聚集。我们的工作突出了聚电解质、抗衡离子和不对称偶极溶剂分子之间的多体相关性导致溶液中聚电解质具有各种独特的结构和分子结构,这为深入理解含离子聚合物提供了思路。