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Cluster formation in fluids with competing short-range and long-range interactions

机译:具有竞争性的短程和长程相互作用的流体团簇形成

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摘要

We investigate the low density behaviour of fluids that interact through a short-ranged attraction together with a long-ranged repulsion (SALR potential) by developing a molecular thermodynamic model. The SALR potential is a model of effective solute interactions where the solvent degrees of freedom are integrated-out. For this system, we find that clusters form for a range of interaction parameters where attractive and repulsive interactions nearly balance, similar to micelle formation in aqueous surfactant solutions. We focus on systems for which equilibrium behaviour and liquid-like clusters (i.e., droplets) are expected, and find in addition a novel coexistence between a low density cluster phase and a high density cluster phase within a very narrow range of parameters. Moreover, a simple formula for the average cluster size is developed. Based on this formula, we propose a non-classical crystal nucleation pathway whereby macroscopic crystals are formed via crystal nucleation within microscopic precursor droplets. We also perform large-scale Monte Carlo simulations, which demonstrate that the cluster fluid phase is thermodynamically stable for this system.
机译:通过研究分子热力学模型,我们研究了通过短程吸引与长程排斥(SALR电位)相互作用的流体的低密度行为。 SALR电位是有效溶质相互作用的模型,其中溶剂自由度被积分出来。对于该系统,我们发现簇形成了一系列相互作用参数,其中吸引和排斥相互作用几乎达到平衡,类似于在表面活性剂水溶液中形成胶束。我们关注于预期达到平衡行为和类液体团簇(即液滴)的系统,并发现在非常狭窄的参数范围内,低密度团簇相和高密度团簇相之间存在新的共存。此外,为平均簇大小开发了一个简单的公式。基于此公式,我们提出了一种非经典的晶体成核途径,由此通过微观前体液滴内的晶体成核作用形成了宏观晶体。我们还执行了大规模的蒙特卡洛模拟,这表明该系统的团簇流体相在热力学上是稳定的。

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