Emelyanenko Kirill A, Emelyanenko Alexandre M, Boinovich Ludmila B
A.N. Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Leninsky Prospect 31 Bldg. 4, 119071 Moscow, Russia.
A.N. Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Leninsky Prospect 31 Bldg. 4, 119071 Moscow, Russia.
Adv Colloid Interface Sci. 2019 Jul;269:357-369. doi: 10.1016/j.cis.2019.04.013. Epub 2019 May 5.
Van der Waals interactions induced by fluctuations of electromagnetic field bear universal nature and act between individual atoms, condensed particles or bodies of any type. Continuously growing interest to theoretical understanding as well as to precise evaluation of van der Waals forces is caused by their fundamental role in many physical, chemical, and biological processes. In this paper, we scrutinize progress in the studies of van der Waals forces, related to recent active development of Coupled Dipole Method (CDM) for the analysis of the behavior and properties of nanosized systems. The application of CDM for the analysis of thin liquid films allowed achieving substantial progress in understanding the behavior of free and wetting films. It was shown that both the macroscopic properties, such as excess free energy and Hamaker constants and the local microscopic parameters, such as polarizabilities, can be successfully calculated based only on properties of individual molecules. The impact of lateral film confinement on the specific excess free energy and the film stability was elucidated, and effect of spatial constraints on the spectrum of vibrational states for liquid film and the underlying substrate was analyzed. It was shown that van der Waals interactions between molecules represent the universal mechanism for dynamic structuring and formation of boundary layers and that the CDM allows self-consistently calculating the properties of these layers in both solid and liquid phases.
由电磁场涨落引起的范德华相互作用具有普遍性,作用于单个原子、凝聚粒子或任何类型的物体之间。对范德华力的理论理解以及精确评估的兴趣不断增长,这是因为它们在许多物理、化学和生物过程中起着基本作用。在本文中,我们审视了范德华力研究的进展,这与耦合偶极子方法(CDM)最近在分析纳米系统行为和性质方面的积极发展有关。CDM在分析薄液膜方面的应用使得在理解自由膜和浸润膜的行为方面取得了重大进展。结果表明,宏观性质,如过量自由能和哈梅克常数,以及局部微观参数,如极化率,仅基于单个分子的性质就能成功计算出来。阐明了横向膜限制对特定过量自由能和膜稳定性的影响,并分析了空间限制对液膜和下层基底振动状态谱的影响。结果表明,分子间的范德华相互作用是边界层动态结构形成的普遍机制,并且CDM能够自洽地计算固相和液相中这些层的性质。