论文标题
远距离离子和短距离水合效应严重控制着各向异性粘土纳米颗粒相互作用
Long range ionic and short range hydration effects govern strongly anisotropic clay nanoparticle interactions
论文作者
论文摘要
水溶液中粘土颗粒的聚集是一个普遍存在的日常环境和技术重要性的过程。然而,在最重要的原子水平上,它的理解很少,因为它取决于溶剂介导的静电,氢键和分散相互作用的复杂而动态的相互作用。考虑到这一点,我们对纯净水和咸水中的高岭石纳米颗粒之间的相互作用进行了广泛的经典分子动力学模拟(包括增强的采样模拟)。我们的模拟揭示了高度各向异性行为,其中纳米颗粒之间的相互作用从吸引力到排斥性,具体取决于纳米颗粒的相对取向。详细的分析表明,在较大的分离(> 1.5 nm)下,这种相互作用由静电效应支配,而在较小的分离下,水合性结构的性质变得至关重要。这项研究强调了粘土纳米颗粒相互作用的令人难以置信的丰富性,例如在例如粘土纳米颗粒聚集的粗粒模型。
The aggregation of clay particles in aqueous solution is a ubiquitous everyday process of broad environmental and technological importance. However, it is poorly understood at the all-important atomistic level since it depends on a complex and dynamic interplay of solvent-mediated electrostatic, hydrogen-bonding, and dispersion interactions. With this in mind we have performed an extensive set of classical molecular dynamics simulations (included enhanced sampling simulations) on the interactions between model kaolinite nanoparticles in pure and salty water. Our simulations reveal highly anisotropic behaviour in which the interaction between the nanoparticles varies from attractive to repulsive depending on the relative orientation of the nanoparticles. Detailed analysis reveals that at large separation (>1.5 nm) this interaction is dominated by electrostatic effects whereas at smaller separations the nature of the water hydration structure becomes critical. This study highlights an incredible richness in how clay nanoparticles interact, which should be accounted for in e.g. coarse grained models of clay nanoparticle aggregation.