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Generalized isobaric-isothermal ensemble: application to capillary condensation and cavitation in heterogeneous nanopores

机译:广义等压-等温集成:在异质纳米孔中的毛细管冷凝和空化中的应用

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摘要

The influence of pore size and chemical heterogeneity on the adsorption/desorption hysteresis loop of a Lennard-Jones fluid confined within simple models of heterogeneous cylindrical nanopores is investigated. The thermodynamic pressure, or grand potential density, is calculated by a new method which was previously developed for mesopores (a few nanometers) to allow the introduction of chemical heterogeneity and further improved in this work for micropores (down to molecular diameters). The efficiency of the algorithm is first verified on simple cases. Secondly, we focus on the pore size effect. It is shown to have a weak influence on the capillary condensation phenomenon which always occurs around the same value of the thermodynamic pressure. On the other hand, the desorption pressure (corresponding to the liquid fracture or cavitation threshold) exhibits a linear dependence on the inverse pore radius. Finally, the effect of chemical heterogeneity, which is characterized by the relative amplitude (< 40%) and wavelength (< 4 nm), is investigated. It is shown to strongly influence the desorption branch of the hysteresis loop. As expected, liquid fracture is favoured by large amplitude heterogeneity. However, for a given amplitude, atomic-scale heterogeneity has a minor influence, whereas the longest wavelengths considered (4 nm) destabilize the confined liquid. It is proposed to correlate this with the typical size of the bubble critical nucleus.
机译:研究了孔径和化学非均质性对Lennard-Jones流体吸附/解吸滞后回线的影响,该流体被限制在非均质圆柱形纳米孔的简单模型内。通过以前为中孔(几纳米)开发的新方法计算热力学压力或大势密度,以引入化学异质性,并进一步改进了微孔(低至分子直径)的工作。首先在简单的情况下验证了算法的效率。其次,我们关注孔径效应。它显示出对毛细管冷凝现象的影响很小,该现象总是在相同的热力学压力值附近发生。另一方面,解吸压力(对应于液体破裂或气蚀阈值)表现出与反孔径的线性关系。最后,研究了化学异质性的影响,其特征是相对振幅(<40%)和波长(<4 nm)。它显示出强烈影响磁滞回线的解吸分支。不出所料,大幅度非均质性有利于液体裂缝。但是,对于给定的振幅,原子尺度的异质性影响较小,而考虑的最长波长(4 nm)则使受限液体不稳定。建议将其与气泡临界核的典型大小相关联。

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