Department of Chemistry , Ivan Franko Lviv National University , 6 Kyrylo and Mefodii Street , Lviv 79005 , Ukraine.
Institute of Inorganic Chemistry, Department of Chemistry and Applied Bioscience , ETH Zurich , Vladimir Prelog Weg 1 , CH-8093 Zurich , Switzerland.
J Phys Chem B. 2019 Nov 21;123(46):9971-9983. doi: 10.1021/acs.jpcb.9b06545. Epub 2019 Nov 11.
Attraction between like-charged macroions is fundamental to many processes in biology, chemistry, and physics. It also plays an important role in industrial applications such as ion-extraction processes or catalysis. In this work, we report a novel mechanism by which attraction can be realized between spherical macroions at high ionic strength. It consists of specific configurations of two, three, and more counterions that appear between macroions with high statistical probability. The attraction is manifested in a minimum in the potential of mean force between the macroions at short distances. Its depth increases with increasing charge of the macroion, demonstrating that the attraction is electrostatic in nature. It is shown that the implicit solvent model with a distance-dependent dielectric constant can capture both the geometry and thermodynamics of charge-stabilized macroion dimers on the qualitative level. The results obtained for a model colloid with a smooth surface are extrapolated to more realistic systems. Evidence is found that the reported mechanism can be observed in small chemical compounds with encapsulated ions such as fullerenes.
带相同电荷的大分子之间的吸引力是生物学、化学和物理学中许多过程的基础。它在工业应用中也起着重要作用,如离子萃取过程或催化。在这项工作中,我们报告了一种在高离子强度下实现球形大分子之间吸引力的新机制。它由两个、三个和更多反离子的特定构型组成,这些反离子以高统计概率出现在大分子之间。吸引力表现为在短距离处大分子之间平均力势能的最小值。随着大分子电荷的增加,它的深度也增加,这表明吸引力本质上是静电的。结果表明,具有距离相关介电常数的隐式溶剂模型可以在定性水平上捕捉到带电荷稳定的大分子二聚体的几何形状和热力学。对具有光滑表面的模型胶体进行的研究结果被外推到更现实的系统中。有证据表明,在诸如富勒烯之类的封装离子的小分子化合物中可以观察到所报道的机制。