Related Experiment Video
Updated: Feb 7, 2026

Flypub To Study Ethanol Induced Behavioral Disinhibition and Sensitization
Published on: May 18, 2020
Two-dimensional supercritical behavior of an ethanol monolayer: a molecular dynamics study
Yoshimichi Andoh1, Kenji Yasuoka
1Department of Mechanical Engineering, Keio University, Kohoku-ku, Yokohama, Japan. tf05096@educ.cc.keio.ac.jp
Abstract:
The two-dimensional (2D) supercritical behavior of an ethanol monolayer formed at the vapor/liquid interface of an ethanol solution has been investigated by a molecular dynamics (MD) calculations with a combination of the OPLS-UA and SPC/E potential models. A 100 A thick slab of ethanol solution was placed at the volume center of the rectangular unit cell by 10 A thick nonabsorbate water surfaces. With such an initial configuration, five independent 15 ns NVT constant MD calculations were carried out under 298.15 K, in which the initial ethanol mole fraction of the bulk solution layer was set to 0.010, 0.022, 0.045, 0.10, and 0.20, respectively. The 2D radial distribution function (rdf) of an adsorbed ethanol molecule showed that the ethanol monolayer could be regarded as a 2D fluid where the adsorbed ethanol molecule had an effective 2D diameter of 4.65 A. On the basis of the 2D rdf result, 2D cluster analysis was carried out from the perspective of the percolation theory. It is confirmed that the critical area occupation probability density, the critical exponents, and the fractal dimension of both nonpercolating and percolating clusters satisfied their nature of universality. Therefore, we concluded that an ethanol monolayer formed at the vapor/liquid interface of ethanol solution behaves as a 2D supercritical fluid at 298.15 K.
Related Concept Videos
Supercritical Fluid Chromatography
SFC utilizes a supercritical fluid mobile phase,...
Behavior of Gas Molecules: Molecular Diffusion, Mean Free Path, and Effusion
Molecular Models
Dynamic Equilibrium
What is Behavior?
Dimensional Analysis
Conversion Factors and Dimensional Analysis
The unit...

